Hostname: page-component-77c89778f8-n9wrp Total loading time: 0 Render date: 2024-07-21T22:04:09.503Z Has data issue: false hasContentIssue false

Glaciological Literature

Published online by Cambridge University Press:  30 January 2017

Rights & Permissions [Opens in a new window]

Abstract

Type
Other
Copyright
Copyright © International Glaciological Society 1971

This is a selected list of glaciological literature on the scientific study of snow and ice and of their effects on the earth; for the literature on polar expeditions, and also on the “applied” aspects of glaciology, such as snow ploughs, readers should consult the bibliographies in each issue of the Polar Record. For Russian material the system of transliteration used is that agreed by the U.S. Board on Geographic Names and the Permanent Committee on Geographical Names for British Official Use in 1947. Readers can greatly assist by sending reprints of their publications to the Society or by informing Dr J. W. Glen of publications of glaciological interest. It should be noted that the Society does not necessarily hold copies of the items in this list, and also that the Society does not possess facilities for microfilming or photocopying.

References

Conferences

[Union GÉodÉsiÇute et GÉophysique internationale. association internationale d’hydrologie scientifique.] [International Council of Scientific Unions. Scientific Committee on Antarctic Research. International Association of Scientific Hydrology. Commission of Snow and Ice.] International Symposium on Antarctic Glaciological Exploration (ISAGE), Hanover, JVew Hampshire, U.S.A. 3-7 September 1968. [Gentbrugge, [Association Internationale d’Hydrologie Scientifique]; Cambridge, Scientific Committee on Antarctic Research, 1970.] xvi, 543p. [(Publication No. 86 [de l’Association Internationale d’Hydrologie Scientifique].)] [Proceedings of conference. For details of individual papers see elsewhere in this list.]Google Scholar

General Glaciology

Barrera, H. V., Problèmes fisicos y geofisicos de la Antártida. Publicaciones de la Real Sociedad Geográfica, Ser. B, No. 477, 1969, 36 p. [Account of Chilean work in the Antarctic during the I.G.Y., including glaciology.]Google Scholar
Borovinskiy, B. A. Elektro-i seysmometrichieskiye issledovaniya mnogoletnemerzlykh gornykh porod i lednikov [Electro- and seismometric studies of frozen soil and glaciers]. Moscow, Izdatel’stvo "Nauka", 1969, 184 p.Google Scholar
Corbel, J. Gallo, G. Cryokarsts et chimie des neiges en zone polaire. Revue Géographique des Pyrénées et du Sud Ouest, Tom. 41, Fasc. 2, 1970, p. 12338. [Similarity between karst and glacier forms; discovery of gypsum deposits on snow; exploration of a cave in a Svalbard glacier.]CrossRefGoogle Scholar
Dilly, N. East Greenland: Kristians Glacier area, 1968. Alpine Journal, Vol. 74, No. 318, 1969, p. 27681. [Summary of results of the British Army East Greenland Expedition, 1968.]Google Scholar
Heine, A. J. Glaciological work at Vanda. Antarctic, Vol. 5, No. 6, 1969, p. 27677. [Note on preliminary glaciological work from New Zealand’s "Vanda" station, Victoria Land.]Google Scholar
Henoch, W. E. S Topographic maps of Canada in glaciological research. Canadian Cartographer, Vol. 6, No. 2, 1969, p. 11829. [Suitability of existing maps and suggestions for improvement.]CrossRefGoogle Scholar
Kieffer, H. Interpretation of the Martian polar cap spectra. Journal of Geophysical Research, Vol. 75, No. 3, 1970, p. 51014. [Existing observations inconclusive on whether caps are primarily H2O or CO2.]Google Scholar
Lewis, J. S. Ice clouds on Venus? Journal of the Atmospheric Sciences, Vol. 27, No. 2, 1970, p. 33334. [Criticism of paper byFukuta, N.,Wang, T.-L,Libby, W.F, ibid., Vol. 26, No. 5, Pt. 2, 1969, p. 114245 on grounds that HCl on Venus has been underestimated and will prevent ice formation. Reply by authors, p. 33435]2.0.CO;2>CrossRefGoogle Scholar
Lliboutry, L. A. Current trends in glaciology. Earth Science Renews, Vol. 6, No. 3, 1970, p. 14167. [Survey of important developments of the last five years.]Google Scholar
Sagan, C. Pollack, J. B. On the structure of the Venus atmosphere. Icarus, Vol. 10, No. 2, 1969, p. 27489. [Results of Mariner 5 and Venera 4 spacecraft measurements not incompatible with presence of ice clouds.]CrossRefGoogle Scholar
Sebert, L. H. Topographic maps of glaciated areas: a cartographer’s reply to W. E. S. Henoch. Canadian Cartographer, Vol. 6, No. 2, 1969, p. 12931. [Reply to criticisms of Canadian maps from a glaciological point of view.]CrossRefGoogle Scholar

Glaciological Instruments and Methods

Aamot, H. W. C Self-contained thermal probes for remote measurements within an ice sheet. (In [Union Géodésique. ...]... International Symposium on Antarctic Glaciological Exploration (ISAGE),. . . 1963, 1970, p. 6368.) [Describes thermal probes now available for penetrating polar ice sheets to depths of 3000 m for remote measurements of in situ temperature and stress conditions. Presents some results from Greenland.]Google Scholar
Latham, J. Smith, M. H. A ground-based instrument for the continuous measurement of charges on cloud particles. Quarterly Journal of the Royal Meteorological Society, Vol. 96, No. 408, 1970, p. 30912. [Instrument which measures charge and dimensions of ice crystals in clouds at ground level.]CrossRefGoogle Scholar
Lesca, C. Impiego della fotogrammetria per il rilievo di aree glaciali. Bollettino della Societá Italiana di Fotogrammetria e Topografia, No. 1, 1970, p. 3551 [Use of photogrammetry in glacier studies. Discussion, p. 51.]Google Scholar
Linkletfer, G. O. The use of cationic ratios in determining annual stratigraphic layers in polar ice. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1963, 1970, p. 1618.)Google Scholar
Mctagcart-cowan, J. D., The design, construction, and use of an ice crystal counter for ice crystal cloud studies by aircraft, [by] McTaggart-Cowan, J.D,Lola, G.G,Vonnegut, B. Journal of Applied Meteorology, Vol. 9, No. 2, 1970, p. 29499.2.0.CO;2>CrossRefGoogle Scholar
Meier, S. Terrestrial photogrammetry on an Arctic glacier during the polar night. Surveying News, No. 21, 1969, p. 4549. [Describes method used for tracing movement of Kongsvegen, Svalbard, during entire year, i.e. including period of winter darkness. Problems of these conditions discussed.]Google Scholar
Regula, H. Satellitenaufnahmen vom Nordpolargebiet. Polarforschung, Bd. 6, Jahrg. 39, Nr. 1, 1969 [pub. 1970], p. 24650. [Use of weather satellites to determine snow and ice coverage in polar regions. English summary.]Google Scholar
Thomas, R. H. Survey on moving ice: a sixty kilometres long triangulation net across an Antarctic ice shell. Survey Review, Vol. 20, No. 157, 1970, p. 32238. [Techniques used on Brunt Ice Shelf and deduction of velocities.]CrossRefGoogle Scholar
Tollan, A. Experiences with snow pillows in Norway. Bulletin de l’Association Internationale d~Hydrologie Scientifique, 15e An., No. 2, 1970, p. 11320.Google Scholar
Ueda, H. T. Garfield, D. E. Deep core drilling at Byrd station, Antarctica. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1963, 1970, p. 5362.) [Describes method and equipment used in drilling to 2 164 m depth.]Google Scholar

Physics of Ice

Alkezweeny, A. J. The fragmentation of freezing water droplets in free fall. Dissertation Abstracts International, B, Vol. 30, No. 2, 1969, p. 782-B83-B. [Abstract of Ph.D. thesis, University of Washington, 1968. University Microfilms order no. 69-13532.]Google Scholar
Alkezweeny, A. J. Freezing of supercooled water droplets due to collision. Journal of Applied Meteorology, Vol. 8, No. 6, 1969, p. 99495. [Brief note on observations from field work.]2.0.CO;2>CrossRefGoogle Scholar
Arnason, B. The exchange of hydrogen isotopes between ice and water in temperate glaciers. Earth and Planetary Science Letters, Vol. 6, No. 6, 1969, p. 42330. [Isotopic exchange in temperate glaciers and its effect on D concentration and its homogeneity.]CrossRefGoogle Scholar
AŽman, A., A CNDO calculation of ring models of polywater [by] Ažman, A.,Koller, J.,Hadži, D. Chemical. Physical Letters, Vol. 5, No. 3, 1970, p. 15758. [Theoretical calculation shows six-molecule ring to be more stable structure.]CrossRefGoogle Scholar
Barrett, J. S.,, Perturbed angular correlation study of the environment of 111Cd nuclei in ice, by Barrett, J.S,Cameron, J.A,Gardner, P.R,Keszthelyi, L.,Prestwich, W.V,Kaplan, M. Journal of Chemical Physics, Vol. 53, No. 2, 1970, p. 75963. [Variation in behaviour with temperature.]CrossRefGoogle Scholar
Bassett, D. R. The surface chemistry of ice nucleation. Dissertation Abstracts, B, Vol. 29, No. 5, 1968, p. 1619-B20-B. [Study of surface properties required for effective ice nucleation. Abstract of Ph.D. thesis, Lehigh University, 1968. University Microfilms order no. 68-15893.]Google Scholar
Bennett, H. F. An investigation into velocity anisotropy through measurements of ultrasonic wave velocities in snow and ice cores from Greenland and Antarctica. Dissertation Abstracts, B, Vol. 29, No. 2, 1968, p. 662-B. [Abstract of Ph.D. thesis, University of Wisconsin, 1968. University Microfilms order no. 68 9055.]Google Scholar
Bilgram, J. H. Segregation of hydrogen fluoride in ice single crystals. Physik der kondensierten Materie, Bd. 10. Ht. 4, 1970, p. 31725. [Study of processes by which HF is distributed in ice crystals, and how its distribution changes with ageing.]Google Scholar
Blinc, R., Rotating frame spin-lattice relaxation in hexagonal ice, [by]Blinc, R.,Lahajnar, G.,Zupancic, I.,Gränicher, H. Chemical Physics Letters, Vol. 4, No. 6, 1969, p. 36364. [Proton spin-lattice relaxation is order of magnitude faster than dielectric relaxation, and is ascribed to molecular vacancy diffusion.]CrossRefGoogle Scholar
Box, H. C., Endor study of X-irradiated single crystals of ice, [by] Box, H.C,Budzinski, E.E,Lilga, K.T,Freund, H.G Journal of Chemical Physics, Vol. 53, No. 3, 1970, p. 105965. [Electron nuclear double resonance used to determine hyperfine coupling of OH radicals.]CrossRefGoogle Scholar
Breene, R. G.jr, Interpretation of OV1-5 spectrometric observations, by Breene, R.G.Jr,Swant, J.S,Marcotte, L. P. Journal of Quantitative Spectroscopy and Radiative Transfer, Vol. 9, No. 9, 1969, p. 123949. [Scattering and absorption by water or ice particles in cloud: theory and application to sample scans.]CrossRefGoogle Scholar
Burrows, D. A. Hobbs, P. V. Charging of ice spheres due to collisions with ice crystals and the electrification of thunderstorms. Journal of the Atmospheric Sciences, Vol. 26, No. 3, 1969, p. 56065. [Theory for interpreting experiments in which ice sphere is charged as it rotates through particle cloud. Applied to measurements in natural snowfalls, and to electrification of thunderstorms.]2.0.CO;2>CrossRefGoogle Scholar
Cameron, J. A., Dynamical effects on 181Ta nuclei in ice, by Cameron, J.A,Gardner, P.R,Keszthelyi, L.,Prestwich, W.V Chemical Physics Letters, Vol. 4, No. 5, 1969, p. 22930. [Temperature dependent increase of asymmetry in angular correlation of 181Ta nuclei in ice found between — 110°C and — 6o°C, showing lively motion of water molecules around Ta ions.]CrossRefGoogle Scholar
Cherkin, A. "Anomalous" water: a silica dispersion? Nature, Vol. 224, No. 5226, 1969, p. 1293. [Evidence that "polywater" is a dispersion of material leach from capillaries.]CrossRefGoogle Scholar
Davy, J. G. Branton, D. Subliming ice surfaces: freeze-etch electron microscopy. Science, Vol. 168, No. 3936, 1970, p. 121618. [Vacuum sublimation of ice watched by electron microscopy. Pits attributed to dislocations seen as well as extreme roughening.]CrossRefGoogle ScholarPubMed
Diliard, D. S.jr, The thermal conductivity of dielectric crystalline solids at low temperatures. Dissertation Abstracts, B, Vol. 29, No. 4, 1968, p. 1337B. [Includes measurements on polycrystalline ice from 80 K to melting point. Abstract of Ph.D. thesis, University of Colorado. 1968. University Microfilms order no. 68-14229.]Google Scholar
Drake, J. C. Electrification accompanying the melting of ice particles. Quarterly Journal of the Royal Meteorological Society, Vol. 95, No. 403, 1969, p. 203. [Discussion of the same author’s paper with same title in ibid., Vol. 94. No. 400, 1968, p. 17691.]CrossRefGoogle Scholar
Eisele, I. Kevan, L. Photoconductivity in γ-irradiated alkaline ice. Journal of Chemical Physics, Vol. 53, No. 5, 1970, p. 186775. [Study of photoconductivity due to trapped electrons in glassy alkaline ice at 77 K.]CrossRefGoogle Scholar
Elliott, E., Charge build-up in ice layers condensing on liquid nitrogen traps, [by]Elliott, E.,Pritchard, T.I,Hampshire, M.J,Romlinson, R.D Vacuum, Vol. 19, No. 8, 1969, p. 366. [Observations and explanation.]CrossRefGoogle Scholar
Ershov, B. G. Pikayev, A. K. The detection of hyperfine structure in the EPR spectrum of a trapped electron in γ-irradiated alkaline glassy ice at 77°K. Radiation Effects. Vol. 2, No. 2, 1970. p. 13536. [Evidence that electron is localized in a trap formed by protons of water molecules.]CrossRefGoogle Scholar
Fernandez, R. Barduhn, A. J. Growth rate of ice crystals. Desalination, Vol. 3, No. 3, 1967, p. 33042. [Measurement in flowing supercooled water. No evidence of kinetic control.]CrossRefGoogle Scholar
Geerinis, G. T. The role of dendrites in spherulitic crystallization. Dissertation Abstracts. B, Vol. 29, No. 11, 1969, p, 4126-B. [Study of freezing process in glycero-water solutions. Abstract of Ph.D. thesis, Stanford University, 1968. University Microfilms order no. 69-8183.]Google Scholar
Goel, A., Molecular orbital calculations on the structure of "polywater", byGoel, A.,Miorthy, A. S. N,Rao, C. N. R Chemical Communications (Journal of the Chemical Society, Section D), 1970. No. 7, p. 42324. [Theoretical calculation to decide most likely structure.]CrossRefGoogle Scholar
Gol’danskiy, V. I. Izucheniye elektronnogo obmena mezhdu ionami Fe2+ i Fe3+ vo l’du metodom gammarezonansnoy spektroskopii [γ-resonance spectroscopic study of the electron exchange between Fe2+ and Fe3+ ions in ice]. [By] Gol’danskiy, V. I.,Stukan, R.A,Tolmachev, A.N.Doklady Akademii Nauk SSSR, Tom 191, No. 2, 1970, p. 38083. [Deduction of activation energy for the exchange.]Google Scholar
Gough, S. R. Davidson, D. W. Dielectric behavior of cubic and hexagonal ices at low temperatures. Journal of Chemical Physics, Vol. 52, No. 10, 1970, p. 544249. [Ice formed from in II and ice IX near — 110°C has longer relaxation time initially.]CrossRefGoogle Scholar
Goren, S. R., Dielectric properties of the hydrates of argon and nitrogen, [by]Gough, S.R.Whalley, E.,Davidson, D.W Canadian Journal of Chemistry, Vol. 46, No. 10. 1968, p. 167381. [Experiments show behaviour similar to that of pure ice but with smaller activation energies and entropies due perhaps to substitutional defects.]Google Scholar
Holmes, D. E., Effects of dissolved oxygen on the electron spin resonance signal intensities of trapped hydrogen atoms and some of their reactions in acidic ice matrices, by Holmes, D.E. Nazhat, N.B,Weiss, J.J Journal of Physical Chemistry, Vol. 74, No. 7. 1970, p. 162226.CrossRefGoogle Scholar
Itagaki, K. X-ray topographic study of vibrating dislocations in ice under an AC electric field. Advances in X-Ray Analysis, Vol. 13, 1970, p. 52638.CrossRefGoogle Scholar
JÁnossy, A., PMR studies of frozen aqueous FeCl2 solution, by JÁnossy, A.,GÜner, G.,Tompa, K. Journal of Chemical Physics, Vol. 51, No. 11, 1969, p. 518990. [Letter. Study of behaviour of spectra does not support cubic-hexagonal transition in the ice.]CrossRefGoogle Scholar
Jones, S. J. X-ray topographic evidence for prismatic dislocations in ice. Journal of Applied Physics, Vol. 41, No. 6, 1970, p. 273839. [Dislocation loops with Burgers vector parallel to c-axis on basal plane in ice.]CrossRefGoogle Scholar
Kahane, A. Faure, P. K. Study of dynamical model of ice lattice in order to interpret the low-frequency Raman spectrum. (In Wright, G.B ed. Light scattering spectra of solids. Proceedings of the international conference on… held at New York University, New York, September 3, 4, 5, 6, 1968, [New York], Springer Verlag New York Inc., 1969, p. 15155.)Google Scholar
Kell, G. S. The freezing of hot and cold water. American Journal of Physics, Vol. 37, No. 5, 1969, p. 56465. [Experiment and theory agree hot water freezes faster than cold for sufficiently high starting temperatures.]CrossRefGoogle Scholar
Kellman, S. A. Gaustad, J. E. Rosseland and Planck mean absorption coefficients for particles of ice, graphite, and silicon dioxide. Astrophysical Journal, Vol. 157, No. 3, Pt. 1, 1969, p. 146567. [Calculation over temperature ranges relevant lo early phases of star formation.]CrossRefGoogle Scholar
Ketcham, W. M. Hobbs, P. V. Direct measurements of the ice-water interfacial temperature for two crystallography orientations during the freezing of pure water. Journal of Crystal Growth, Vol. 6, No. 1, 1969, p. 11315- [Differences within experimental accuracy of ±0.005°C.]CrossRefGoogle Scholar
Kheysin, D.YE. Cherepanoy, N. V. Preobrazovaniye formy i peremeshcheniye vozdushnykh vklyucheniy vo l’du [Transformation and movement of air inclusions in ice]. Problemy Arktiki i Antarktiki, Vyp. 32, 1969, p. 10005.Google Scholar
Kieffer, H. Spectral reflectance of CO2-H2O frosts. Journal of Geophysical Research, Vol. 75, No. 3, 1970, p. 50109. [Reflectance spectra from 0.8 to 3.2 μm measured for variety of CO2-H2O frosts as part of study of Martian polar caps.]CrossRefGoogle Scholar
Klinger, J. NeumaÏer, K., Conductibilité thermique de la glace. Comptes Rendus Hebdomadaires des Séances de l’Académie, des Sciences (Paris), Sér. B, Tom. 269, No. 19, 1969, p. 94548. [Measurement of thermal conductivity of single crystals from 1.7 to 140 K parallel to c-axis.]Google Scholar
Kohnen, H. Über die Absorption elastischer longiiudimilcr Wellen im Eis. Polarforschung, Bd. 6. Jahrg. 39, Nr. 1, 1969 [pub. 1970]. p. 26975. [Measurements during E.G.I.G. II in Greenland used to deduce attenuation constant for seismic P-waves and its variation with frequency. English abstract.]Google Scholar
Kopp, M. Calculation and analysis of pulsed-N.M.R. line shapes of crystals. U.S. Dept. of Commerce. National Bureau of Standards Special Publication 301, 1969, p. 26567. [Discussion of interpretation of line shape in ice.]Google Scholar
Krishnan, P. N. Investigation on the solubility of hydrochloric acid in ice. Dissertation Abstracts International. B, Vol. 30, No. 6, 1969, p. 2635-B. [Diffusion of HCl into ice crystals studied. Abstract of Ph.D. thesis, Temple University, 1969. University Microfilms order no. 69-18377.]Google Scholar
Kroh, J., Stabilization of electrons in alkaline γ-irradiated light and heavy ice at 77°K, [by]Kroh, J.,Stradowski, C.,Mayer, J. Radiochemical and Radioanalytical Letters, Vol. 2, No. 4. 1969, p. 20916. [Study of isothermal decay of trapped electrons in ice.]Google Scholar
Kvilividze, V. I., O sushchestvovanii kvazizhidkoy plenki na poverkhnosti l’da [Existence of a quasi-liquid film on the surface of ice]. [By] Kvilividze, V.I,Kiselev, V.F,Ushakova, L.A Doklady Akademii Nauk SSSR, Tom 191, No. 5, 1970, p. 108890. [Nuclear magnetic resonance study.]Google Scholar
Latham, J. Saunders, C. P. R. The electrostatic forces on charged ice crystals separated by small distances in an electric field. Quarterly Journal of the Royal Meteorological Society, Vol. 96, No. 408, 1970, p. 26672. [Direct measurements on metallic models.]CrossRefGoogle Scholar
Latham, J. Saunders, C. P. R. Experimental measurements of the collection efficiencies of ice crystals in electric fields. Quarterly Journal of the Royal Meteorological Society, Vol. 96, No. 408, 1970, p. 25765. [Aggregation of small ice crystals on an ice sphere.]CrossRefGoogle Scholar
Levi, L. Aufdeemaur, A. N. Crystallographic orientation and crystal size in cylindrical accretions of ice. Journal of the Atmospheric Sciences, Vol. 27, No. 3, 1970, p. 44352. [Study of ice deposited on slowly rotating cylinders from water droplets in a wind tunnel.]Google Scholar
Majid, Y. A., Dielectric and nuclear magnetic resonance study of the hydrate of sulfur hexafluoride, [by] Majid, Y.A,Garg, S.K,Davidson, D.W Canadian Journal of Chemistry, Vol. 46, No. 10, 1968, p. 168390. [This clathrate compound has properties similar to ice but slower diffusion of water molecules suggesting diffusion in ice is due to interstitial molecule migration.]CrossRefGoogle Scholar
Malo, B. A. Cationic concentration by freezing. II. Effect of ice washing. Engineering Bulletin of Purdue University. Engineering Extension Series No. 132, Pt. 2, 1968, p. 86573. [Study of concentration of cations in water by freezing.]Google Scholar
Messmer, R. P. "Polywater": possibility of p-electron delocalization. Science, Vol. 168, No. 3930, 1970, p. 47980. [Theory of stability of planar six-ring water polymer.]CrossRefGoogle ScholarPubMed
Murphy, E. J. Generation of electromotive forces during the freezing of water. Journal of Colloid and Interface Science, Vol. 32, No. 1, 1970, p. 111. [Study of freezing potentials of dilute solutions, theory of process and of pure water freezing potential.]CrossRefGoogle Scholar
Nair, N. K. Adamson, A. W. Physical adsorption of vapors on ice. III. Argon, nitrogen, and carbon monoxide. Journal of Physical Chemistry, Vol. 74, No. 10, 1970, p. 222930. [Comparison of adsorption isotherms and deductions concerning surface electric field.]CrossRefGoogle Scholar
Nakamura, T. Jones, S. J. Softening effect of dissolved hydrogen chloride in ice crystals. Scripta Metallurgica, Vol. 4, No. 2, 1970, p. 12326. (HCl, like HF, causes softening of ice which is more marked at lower temperatures.]CrossRefGoogle Scholar
Namiot, A.YU. Gorodetskaya, L. YE. Rastvorimost’ gazov vo l’du [Solubility of gases in ice]. Doklady Akademii Nauk SSSR, Tom 190, No. 3, 1970, p. 60406. [Measurement of solubility of various gases in ice at high pressures.]Google Scholar
O’konski, C. T. Covalent polymers of water. Science, Vol. 168, No. 3935, 1970, p. 108991. [Possible structure for "polywater".]CrossRefGoogle Scholar
Osterkamp, T. E. Electrical phenomena accompanying the phase change of dilute KCl solutions into single crystal ices. Dissertation Abstracts International, B, Vol. 30, No. 4, 1969, p. 1862-B-63-B. [Abstract of Ph.D. thesis, St. Louis University, 1968. University Microfilms order no. 69-16042.]Google Scholar
Pena, J. Pena, R. G.DE Freezing temperatures of water droplets in equilibrium with different gases. Journal of Geophysical Research, Vol. 75, No. 15, 1970, p. 283135. [Study of effect of gases, especially those which form clathrates, on droplets supercooling.]CrossRefGoogle Scholar
Petsko, G. A. Proton magnetic resonance spectrum of polywater. Science, Vol. 167, No. 3915, 1970, p. 171. [Observation of spectrum.]CrossRefGoogle ScholarPubMed
Prask, H. J., Neutron scattering studies of molecular vibrations in ice, by Prask, H. [J.],Boutin, H. [P.],Yip, S. U.S. Dept. of Commerce. National Bureau of Standards Special Publication 301, 1969, p. 33537. [Summary of theory and comparison with experimental data.]Google Scholar
Prodi, F., Distribution of contaminants in ice grown by accretion, [by]Prodi, F.,Prodi, V.,Fiore, G. Journal of Applied Meteorology, Vol. 9, No. 2, 1970, p. 28380. [Analysis of ice artificially grown from super-cooled droplets of contaminated water and possible implications for hail.]2.0.CO;2>CrossRefGoogle Scholar
Roberts, P. Hallett, J. A laboratory study of the ice nucleating properties of some mineral particulars. Quarterly Journal of the Royal Meteorological Society, Vol. 95, No. 403, 1969, p. 20405. [Discussion of the same authors’ paper with same title in ibid., Vol. 04, No. 399, 1968, p. 2534.]CrossRefGoogle Scholar
RÖmkens, M. J. M. Migration of mineral particles in ice with a temperature gradient. Dissertation Abstracts International, B, Vol. 30, No. 4, 1969, p. 1456-B57-B. [Theory, and experiments witli glass beads. Abstract of Ph.D. thesis, Cornell University, 1969. University Microfilms order no. 69-10464.]Google Scholar
Schneider, W. Fischbeck, K. La formation de cristaux de glace à partir de solutions salines. Chimie et Industrie Génie Chimique, Tom. 99, No. 7, 1968, p. 88182. [Theory of maximum rate of growth of smooth ice layer from a salt solution.]Google Scholar
Schneider, W. Fischbeck, K. Über die Kristallisation von Eis aus Salzlösungen. Desalination, Vol. 5, No. 2, 1968, p. 21730. [Method of growing salt-free ice from solution of NaCl. English summary.]CrossRefGoogle Scholar
Schubert, G. Lingenfelter, R. E. Superheated ice formed by the freezing of superheated water. Science, Vol. 168, No. 3930, 1970, p. 46970. [Discussion of possible phase changes between metastable states and observations of such transitions in the ice system.]CrossRefGoogle ScholarPubMed
Schulte-frohlinde, D. Vacek, K. Radiation chemistry of aqueous frozen solutions. Current Topics in Radiation Research, Vol. 5, 1969, p. 3974. [Review of experiments and their interpretation for pure ice and ice with various impurities.]Google Scholar
Takahashi, T. Electric surface potential of growing ice crystals. Journal of the Atmospheric Sciences, Vol. 27, No. 3, 1970, p. 45362. [Study of charge acquired on surface of ice for different growth conditions from the vapour.].2.0.CO;2>CrossRefGoogle Scholar
Terao, K. Ohtomo, Y. Kinetische Untersuchung über die Eisbildung in Wasser. Japanese Journal of Applied Physics,.Vol. 8, No. 5, 1969, p. 54550. [Study of nucleation time of supercooled water and deduction of activation energies. English summary.]CrossRefGoogle Scholar
Verke, G. Stauff, J. Zur Lumineszenz des Eises. Berichte der Bunsengesellschaft für physikalische Chemie, Bd. 74. Nr. 4, 1970, p. 35864. [Study of u.v. excited luminescence in ice at 77 K. Recombination luminescence of organic trace impurities thought to be responsible.]CrossRefGoogle Scholar
Weisweiler, W. Durch sekundäre Keimzentren bedingte makroskopische Wachstumsstörungen an Eiskristallen auf einem Tauspiegel. Zeitschrift für Meteorologie, Bd. 21, Ht. 8, 1970, p. 24952. [Effects of other AgI nuclei on growth of ice crystals on a dew-point mirror. English summary.)Google Scholar
Whalley, E. Absorption of light by the sound waves in orientationally disordered crystals. U.S. Dept. of Commerce. National Bureau of Standards Special Publication 301, 1969, p. 32326. [Summary of general theory and application to ice.]Google Scholar
Wood, G. R. Walton, A. G. Homogeneous nucleation kinetics of ice from water. Journal of Applied Physics, Vol. 41, No. 7, 1970, p. 302736. [Analysis of experiments on droplet freezing.]CrossRefGoogle Scholar
Zagrodzki, S. Niedzielski, Z. Gewinnung von Eiskristallen beim Eindickungsprozess von Saccharoselösungen. Kristall und Technik, 4. Jahrg., 3. Ht., 1969. p. 399405. [Study of ice crystals produced from saccharose solutions by freezing. English abstract.]CrossRefGoogle Scholar

Land ice. Glaciers. Ice shelves

Acharya, H. K. Wave propagation in inhomogeneous media with Antarctic ice cap as a model. Dissertation Abstracts International, B, Vol. 30, No. 4, 1969, p. 1762-B. [Abstract of Ph.D. thesis. University of Wisconsin. University Microfilms order no. 69-12332.]Google Scholar
Alekseyev, V. R. Belyak, V. I, Peshchernye l’dy yuzhnay Sibiri [Cave ice of southern Siberia]. Vestnik Moskovskogo Universiteta, Ser. 5, 25 God, [No.] 1, 1970, p. 5965. [Reviews data on cave ice in southern Siberia and discusses its origin and dynamics. English abstract.]Google Scholar
Alford, D. Mass-balance studies: Grasshopper Glacier, Montana. Arctic and Alpine Research, Vol. 2, No. 1. 1970, p. 7579. [Studies in 1967 and 1968 on this glacier in Beartooth Mountains, U.S.A.]CrossRefGoogle Scholar
allen, G. A. Whitworth, R. Ice thickness determination at Wilkes. (In [Union Géodésique….]… International Symposium on Antarctic Glaciological Exploration (ISAGE),…1968, 1970. p. 40514.) [Reports systematic geophysical survey over ice dome, near Wilkes, and trough separating dome from Antarctic continent.]Google Scholar
Ambach, W. Dansgaard, W. Fallout and climate studies on firn cores from Carrefour, Greenland. Earth and Planetary Science Letters, Vol. 8, No. 4, 1970, p. 31116. [Comparison of gross β-activity and tritium profiles with fall-out record and implications of results for accumulation and climatic change.]CrossRefGoogle Scholar
Avsyuk, G. A. Kotlyakov, V. M, Glaciers on the move. Unesco Courier, 22nd Year, 1969, p. 1621, 32. [Outlines knowledge of glaciers and possible future uses.]Google Scholar
Behrendt, J. G. The structure of the Filchner Ice Shelf and its relation to bottom melting. (In [Union Géodésique….]…International Symposium on Antarctic Glaciological Exploration (ISACE),…1968, 1970, p. 48896.) [Measurements of snow thickness, elevation, ice thickness, and bed-rock topography. High rate of bottom melting seems probable.]Google Scholar
Beitzel, J. E. The relationship of ice thicknesses and surface slopes in Dronning Maud Land, (In [Union Géodésique….]…International Symposium on Antarctic Glaciological Exploration (ISAGE),…1968, 1970. p. 191203.)Google Scholar
Benson, C. S. Comparative snow studies on the Antarctic and Greenland ice sheets. (In [Union Géodésique….]…International Symposium on An/arctic Glaciological Exploration (ISAGE),…1963, 1970, p. 24253.) [Stratification at "New Byrd" station compared with 6 stations on Greenland ice sheet which have comparable mean annual temperatures and rates of accumulation.]Google Scholar
Bentley, C. R. Seismic anisotropy in the west Antarctic ice sheet.(In [Union Géodésique….]…International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 12830.) [Describes briefly procedure and observations, which demonstrate ice sheet is strongly anisotropic.]Google Scholar
Bund, G. M. Stephenson, P. J. Recent glacier retreat on Heard Island. (In [Union Géodésique….]…International Symposium on Antarcic Glaciological Exploration (ISAGE),… 1963, 1970, p. 44958.) [Survey of glaciers in 1963 showed general major retreat had recently occurred. Resurveys in 1965 and 1969 suggest readvance in 2 glaciers.]Google Scholar
Budd, W. F. The dynamics of ice masses. ANARE Scientific Reports. Ser. A(IV). Glaciology. Publication No. 108, 1969, [xii], 216 p. [Theory of glacier flow].Google Scholar
Budd, W. F. The Wilkes ice cap project. (In [Union Géodésique….]…International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 41429.) [First results of project to determine complete dynamics of medium-scale ice cap in order to understand basic dynamics of ice masses in general.]Google Scholar
Budd, W. F., The extent of basal melting in Antarctica, by Budd, W. [F.],Jenssen, D.,Radok, U. Polarforschung, Bd. 6, Jahrg. 39, Nr. 1, 1969 [pub. 1970], p. 293306. [Deduction of ice-sheet flow lines. balance flow velocities and strain rates, basal heating, temperature profiles and melt rates for the Antarctic ice sheet based on existing maps and assumed zero balance.]Google Scholar
Bulatov, V. I. Rebyakin, V. S. Ledniki kak landshaftnyye kompleksy geograficheskoy obolochki zemli [Glaciers as landscape complexes of geographical ground cover]. Izvestiya Vsesoyuznogo Geograficheskogo Obshchestva, Tom 102, Vyp. 1, 1970, p. 5456.Google Scholar
Bull, C. B. B Carnein, C. R. The mass balance of a cold glacier: Meserve Glacier, south Victoria Land, Antarctica. (In [Union Géodésique….]…International Symposium on Antarctic Glaciological Exploration (ISAGE),…1968, 1970, p. 42946.) [1965-66 observations show mass balance of glacier nearly in equilibrium for this limited period. Results discussed.]Google Scholar
Campbell, W. J. Rasmussen, L. A. A heuristic numerical model for three-dimensional time-dependent glacier flow. (In [Union Géodésique….]…International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 17790.) [New mathematical model of use in studying interplay between glaciers and climate.]Google Scholar
Carlson, W. S. Ice survey by the U.S. Coast Guard. Science, Vol. 168, No. 3929, 1970, p. 39697. [Study of Greenland glaciers which are thought to be source of icebergs.)CrossRefGoogle ScholarPubMed
Chorlton, J. C. Lister, H. Snow accumulation over Antarctica. (In [Union Géodésique….]…International Symposium on Antarctic Glaciological Exploration (ISAGE),…1968, 1970, p. 25463.)Google Scholar
Clough, J. W. Bentley, C. R. Measurements of electromagnetic wave velocity in the east Antarctic ice sheet. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE), 1968, 1970, p. 11538.) [Measurements in ice of Dronning Maud Land, 1965-66 and 1967-68, and comparison of electromagnetic and seismic echo times.]Google Scholar
Dalinger, R. E. Soria, L. F. Observations on the movement of the Larsen Ice Shelf between latitudes 65°S and 66°S. (In [Union Géodésique….)… International Symposium on Antarctic Glaciological Exploration (ISAGE),…1968, 1970, p. 488.) [Abstract. Observations 1965 and 1967.]Google Scholar
Dansgaard, W., One thousand centuries of climatic record from Camp Century on the Greenland ice sheet, byDansgaard, W.,Johnsen, S.J,Møller, J. Science, Vol. 166, No. 3903, 1969, p. 37781. [18O used to give time correlation of 1 390 m core. Climatic oscillation deduced.)CrossRefGoogle ScholarPubMed
Dansgaard, W., Oxygen isotope analysis of a core representing a complete vertical profile of a polar ice sheet, byDansgaard, W.,Johnsen, S.J, Møller, J.,Langway, C. G. Jr(In [Union Géodésique….]…International Symposium on Antarctic Glaciological Exploration (ISAGE),…1968, 1970, p. 9394.) [Abstract.]Google Scholar
Denton, G. H., Histoire glaciaire et chronologie de la région du détroit de McMurdo, sud de la Terre Victoria, Antarctide. Note préliminaire, par G. H, Denton, R. L. Armstrong et M. Stuiver. Revue de Géographie Physique et de Géologie Dynamique, Deuxième Sér., Vol. 11, Fasc. 3, 1969, p. 26578. [Potassium-argon and radiocarbon dales provide time-scale for fluctuations of ice sheet in Victoria Land, Antarctica (including Ross Ice Shelf). Results discussed.)Google Scholar
Dewart, G. Seismic investigation of ice properties and bedrock topography at the confluence of two glaciers, Kaskawulsh Glacier, Yukon Territory, Canada. Dissertation Abstracts, B. Vol. 29, No. 9, 1969, p. 3368-B. [Abstract of Ph.D thesis, Ohio State University, 1968. University Microfilms order no. 69-4871.]Google Scholar
Dorrer, E. Movement determination of the Ross Ice Shelf, Antarctica. (In [Union Géodésique….]…International Symposium on Antarctic Glaciological Exploration (ISAGE),…1968, 1970, p. 46771.) [Shows how geodetic method provides reliable and precise results.)Google Scholar
Dort, W., Climatic causes of alpine glacier fluctuation, southern Victoria Land.(In [Union Géodésique….]…International Symposium on Antarctic Glaciological Exploration (ISAGE),…1968, 1970, p. 35862) [Evidence that region was more extensively glaciated in past and that fluctuations of glaciers caused by local climatic variations in mountainous area reflect regional changes.)Google Scholar
FReyfel’d, V.YA. O temperaturnom rezhime materikovogo lednikovogo pokrova Zemli Enderbi [Concerning the temperature regime of the continental ice cover of Enderby Land). Informatsionnyy Byulleten’ Sovetskoy Antarklicheskoy Expeditsii, No. 73, 1969, p. 1015. [Temperatures of ice sheet measured to 27 m depth, 1967.]Google Scholar
Giovinetto, M. B. The Antarctic ice sheet and its probable bi-modal response to climate. (In [Union Géodésique…]…International Symposium on Antarctic Glaciological Exploration (ISAGE),…1968, 1970, p. 34758.) [Mass budget estimates for each ice shelf drainage system of interior province of Antarctica.]Google Scholar
Giovinetto, M. B. Glacier landforrns of the Antarctic coast and the regimen of the inland ice. Dissertation Abstracts, B, Vol. 29, No. 2, 1968, p. 653-B. [Discussion of mass balance of Antarctic ice sheet. Abstract of Ph.D. thesis, University of Wisconsin, 1968. University Microfilms order no. 68-9078.]Google Scholar
Govorukha, L. S. Popova, N. M. Uzel sovremennogo oledeneniya v gorakh Byrranga (Vostochnyy Taymyr) [Amount of present-day glacierization in the Byrranga mountains (Eastern Taymyr)]. Izvestiya Vsesoyuznogo Geograficheskogo Obshchestva, Tom 102, Vyp. 3, 1970, p. 24550. [Results of glaciological expedition in 1967.]Google Scholar
Gow, A. J. Preliminary results of studies of ice cores from the 2164 m deep drill hole, Byrd station, Antarctica. (In [Union Géodésique….]…International Symposium on Antarctic Glaciological Exploration (ISAGE),…1968, 1970, p. 7890.) [Preliminary studies at drill site included cursory examination of all cores for significant stratigraphic markers followed by spot checks of bulk density, air bubble content, crystal size and fabric, and measurements of electrolytic conductivity.)Google Scholar
GrÖtzbach, E. Rathjens, C. Die heutige und die jungpleistozäne Vergletscherung des Atghanischen Hindukusch. Zeitschrift für Geomorphologie, Supplementband 8, 1969, p. 5875. [General survey of present glacierization of Afghan Hindu Kush and of Würm period extension. English and French summaries.)Google Scholar
Halliday, W. R. Anderson, C. H. Glacier caves. A new field of speleology. Studies in Speleology, Vol. 2, Pt. 2, 1970 (for 1969), p. 5359- [Description of extensive cave system beneath Paradise Glacier, Mount Rainier, Washington, U.S.A.]Google Scholar
Hamilton, W. L. Horizontal and vertical distribution of microparticles in the 1965 layer between Byrd station and the Whitmore Mountains, Antarctica. (In [Union Géodésique….)…International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 3142.) [Fall-out and accretion of dust depend on climatological factors.)Google Scholar
Hamilton, W. L. Microparticle deposition on polar ice sheets. Dissertation Abstracts International, B, Vol. 30, No. 4,’ 1969, p. 1754-B. [Abstract of Ph.D. thesis, Ohio State University, 1969. University Microfilms order no. 69-15924.] Google Scholar
Hanappe, F., Chemistry of Antarctic ice: implications on the rate of accretion of extra-terrestrial matter, byHanappe, F.,Vosters, M.,Picciotto, E. [E.],Deutsch, S.(In [Union Géodésique…]… International Symposium on Antarctic Glaciological Exploration (ISAGE),.. . 1968, 1970, p. 4750.) [From rate of deposition of nickel and other elements on Antarctic ice sheet, it is estimated that mass accretion of extraterrestrial matter on surface of Earth is not more than 105 tons year—1.]Google Scholar
Heine, A. J. Strain networks on the McMurdo Tee Shelf. (In [Union Géodésique…]….International Symposium on Antarctic Glaciological Exploration (1SAGE),… 1968, 1970, p. 497507.) [Describes methods used and results obtained.)Google Scholar
Higgins, A. K. On some ice-dammed lakes in the Fredrikshåb district, south-west Greenland. Meddelelser fra Dansk Geologisk Forening, Bd. 19, Ht. 4. 1970, p. 37897. [Description of three lakes which drain regularly and discussion of mechanism.]Google Scholar
Holdsworth, G. Deformation of the Ross Ice Shelf, Antarctica. Geological Society of America, Bulletin, Vol. 81, No. 5, 1970, p. 156970. [Suggests that theory developed to explain waves on McMurdo Ice Shelf may also apply to other waves on Ross Ice Shelf.]CrossRefGoogle Scholar
Holdsworth, G. Bull, C. B. B The flow law of cold ice; investigations on Meserve Glacier, Antarctica. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 20416.) [Measurements of deformation of bore holes, of tunnels along bed, and of horizontal circular holes cut in walls of tunnels.]Google Scholar
Hollin, J. Is the Antarctic ice sheet growing thicker? (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 36374.) [Evidence, mainly glaciological, EOT and against current thickening of ice sheet centre on time scale of several thousands of years. Reviews possible causes of thickening.]Google Scholar
Høy, T. Surveying and mapping in southern Peary Land, North Greenland. With an appendix: some observations on the hydrology of the Jørgen Brønlund Fjord district. Meddelelser em Grønland, Bd. 18a, Nr. 3, 1970, 50 p., maps (4 in pocket). [Field work in 1949-50 and 1963. Includes regime measurements on Chr. Erichseiis Iskappe and run-off measurements in Kedelkrogelv.]Google Scholar
Ishida, T. Glaciological research on the inland traverse of the 8th Japanese Antarctic Research Expedition. (In [Union Géodésique.. ..]… International Symposium on Antarctic Glaciological Exploration (ISAGE),. , . 1968, 1970, P- 13038,) [Ice surface elevations and ice thicknesses and relation between them.|CrossRefGoogle Scholar
Ivan’kov, P. A. Sovrrmennoye oledeneniye verkhov’yev i levykh pritokov Amudar’i [Present-day glacierization in the upper and left tributaries of the Amudar], Izoestiya Vsesoyuznogo Geograficheskogo Obshchestva, Tom 102, Vyp. 3, 1970, p. 23944, [Description of glaciers in this part of the Pamir.]Google Scholar
Kamalov, B. A. O vliyanii stepeni oledeneniya na stok gornykh rek [On the effect of the degree of glaciation on run-off of mountain rivers]. Meteorologiya i Gidrologiya, 1969, No. 11, p. 97100.Google Scholar
Kane, H. S. A study of 10 m firn temperatures in central east Antarctica. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE), . . 1968, 1970, p. 16574.] [Study to analyse certain relationships between mean annual air temperature and topographical features which produce "anomalously warm area" first observed on Dronning Maud Land traverses.]Google Scholar
Klemsdal, T. A glacial-meteorological study of Gråsubreen, Jotunheimen. Norsk Polarinstitutt. Årbok, 1968 [pub. 1970], p. 5874. [Measurements of ablation and of heat balance terms on this Norwegian glacier.]Google Scholar
Koernek, R. M. Some observations on superimposition of ice on the Devon Island ice cap, N.W.T., Canada. Geografiska Annaler, Vol 52A, No. 1, 1970, p. 5767. [Suggests method of determining altitude of long-period equilibrium line.]CrossRefGoogle Scholar
Laniiway, C. C.,Features and measurements of deep polar ice cores obtained by various drilling methods. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 77.) [Abstract.]Google Scholar
Lick, W. The propagation of disturbances on glaciers. Journal of Geophysical Research, Vol. 75, No. 12, 1970, p. 218997. [Theory of propagation of thickness disturbances on glaciers including non-linear and two-dimensional effects with Newtonian viscous flow.]CrossRefGoogle Scholar
Lliboutry, L. A. Ice flow law from ice sheet dynamics. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),.. . 1968, 1970, p. 21628.) [Review. Strain rates in ice caps are larger than in ice shelves by full order of magnitude. Concludes that previous anisotropy must be taken into account in ice sheet flow theory.]Google Scholar
Loewe, F. Schelfeis oder Eisschelf? (Shelfice or ice shelf?) Erdkunde, Bd. 24, Ht. 2, 1970, p. 14445. [Attempts to clarify difference between these two terms in both English and German usage.]CrossRefGoogle Scholar
Lorius, C., Dating of firn layers in Antarctica: application to the determination of the rate of snow accumulation, byLorius, C.,Lambert, G.,Hagemann, R.,Merlivat, L.,Ravoire, J.,Ardouin, B.,Bauer, A.,Martin, J.,Ricou, G. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 315.) [Mainly good agreement with accumulation-stake measurements and results of stratigraphy studies, but suggests that accumulation rate generally accepted for central regions may be too high.]Google Scholar
Lorius, C., Variation in the mean deuterium content of precipitation in Antarctica byLorius, C.,Merlivat, L., andHagemann, R. Journal of Geophysical Research, Vol. 74, No. 28, 1969, p. 702731. [Relation between D content and mean annual temperature deduced from firn profiles.)CrossRefGoogle Scholar
Mccorkell, R. H.,, A search for cosmic dust in a large collection of particulate and dissolved material from polar ice, by McCorkell, R.H,Pinson, W.H,Fireman, E.L,Langway, C. C. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 2530.) [Reports unsuccessful search at Camp Century, Greenland.]Google Scholar
Maksimov, YE. V. Kosmicheskiye faktory oledeneniya [Cosmic factors of glaciation]. Izvestiya Vsesoyuznogo Geograficheskogo Obshchestva, Tom 102, Vyp. 4, 1970, p. 33946. [Extraterrestrial variations that can be correlated with glacier changes.]Google Scholar
MaranguniĆ, C. D., Effects of a landslide on Sherman Glacier, Alaska. Dissertation Abstracts International, B, Vol. 30, No. 3, 1969, p. 1210-B. [Study of mass balance and glacier advance. Abstract of Ph.D. thesis, Ohio State University, 1968. University Microfilms order no. 69-11669.]Google Scholar
Martinec, J. Recession coefficient in glacier runoff studies. Bulletin de l’Association Internationale d’Hydrologic Scientifique, 15e An., No. 1, 1970, p. 8790. [Usefulness of recession coefficient in assessment of temperature dependence of run-off.]Google Scholar
Mayr, F. Die postglazialen Gietscherschwankungen des Mont Blanc-Gebietes. Zeitschrift für Geomorphologie, Supplementband 8, 1969, p. 3157. [Review of post-glacial history of major glaciers flowing from Mont Blanc on both French and Italian sides. English and French summaries.]Google Scholar
NÜnlist, H. Über den Kronengletscher nach Ny-Ålesund (Spitzbergen). Les Alpes. Revue du Club Alpin Suisse. 46e An., 1er Trimestre, 1970, p. 3541.Google Scholar
Nye, J. F. Glacier sliding without cavitation in a linear viscous approximation. Proceedings of the Royal Society, Ser. A, Vol. 315, No. 1522, 1970, p. 381403. [Application of model to a temperate glacier. Calculation of drag and thickness of regelation layer.]Google Scholar
Orheim, O. Glaciological investigations of Store Supphellebre, west-Norway. Norsk Polarinstitutt. Skrifter, No. 151, 1970, 48 p. [Mostly mass balance observations in 1963-67.]Google Scholar
Østrem, G. Ziegler, T. Atlas over breer i Sør-Norge. .Norges Vassdrags- og Elektrisitelsvesen. Meddelelse fra Hydrologisk Avdeling, Nr. 20, 1969, [i], 207 p. + map in end-pocket. [Atlas of glaciers in south Norway based on detailed inventory initiated in January 1969. In Norwegian and English.]Google Scholar
Peterson, D. N. Glaciological investigations on the Casement Glacier, southeast Alaska. Dissertation Abstracts International, B, Vol. 30, No. 4, 1969, p. 1765-B66-B. [Surface velocity, mass balance and heat balance measurements. Ice tunnel observations of bed slip. Abstract of Ph.D. thesis, Ohio State University, 1969. University Microfilms order no. 69-15947.]Google Scholar
Picciotto, E. E., Snow accumulation along the South Pole-Dronning Maud Land traverse, by Picciotto, E. [E.],Breuck, W.de,Crozaz, G. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 1822.) [Average annual snow accumulation values since 1955 derived from distribution of fission products with depth (2-3 m) at over 75 glaciological stations.]Google Scholar
Radok, U., Steady-state temperature profiles in ice sheets, byRadok, U.,Jenssen, D.,Bud, W. [F.] d. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),. . 1968, 1970, p. 15165.) [Profiles computed for various values of glaciological variables.]Google Scholar
Ragan, D. M. Structures at the base of an ice fall. Journal of Geology, Vol. 77, No. 6, 1969, p. 64767. [Detailed study of structures at base of ice fall which lies below firn limit on Gulkana Glacier, Alaska, and suggested origin of foliation.]CrossRefGoogle Scholar
Ravoire, J., Tritium content in a firn core from Antarctica, [by]Ravoire, J.,Lorius, C.,Robert, J.,Roth, E. Journal of Geophysical Research, Vol. 75, No. 12, 1970, p. 233135. [Determination of accumulation in Terre Adélie based on tritium fall-out from nuclear tests and decay of natural tritium.]CrossRefGoogle Scholar
Raynaud, D., Gases entrapped in ice: a preliminary report on the study of two vertical profiles in Terre Adélie, Antarctica, byRaynaud, D.,Lorius, C.,Ducheylard, G.,Botter, R. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),.. . 1968, 1970, p. 9192. [Presents data from 2 drill holes about 100 m deep in coastal region, one in ablation zone and the other in accumulation zone.]Google Scholar
Renner, R. C. B Surface elevations on the Larsen Ice Shelf. British Antarctic Survey Bulletin, No. 19, 1969, p. 18. [Flight traverses over Antarctic Peninsula during summer of 1966-67 using radio echo-sounding technique.]Google Scholar
Robin.DE, G.Q. Stability of ice sheets as deduced from deep temperature gradients. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 14151.) [Study of change in surface elevation with time at fixed geographical points by means of observations of temperature distribution within ice sheet. Examples from Greenland and Byrd Land, Antarctica.]Google Scholar
Robin.DE, G.Q., Interpretation of radio echo sounding in polar ice sheets, by Robin.DE, G.Q.,Evans, S.,Bailey, J.T Philosophical Transactions of the Royal Society, Vol. 265A, No. 1166, 1969, p. 437505.Google Scholar
Robin.DE, G.Q., Radio echo exploration of the Antarctic ice sheet, by Robin, G.DE. Q,Swithinbank, G. W. M,Smith, B. M. E (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 97115.) [Preliminary results from different areas presented.]Google Scholar
Rundle, A. S. Snow accumulation and ice movement on the Anvers Island ice cap, Antarctica: a study of mass balance. (In [Union Géodésique….]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 37790.) [Observations, November 1965-January 1968, indicate mass balance is in equilibrium; but longer period of observation suggested.]Google Scholar
Shumskiy, P. A. The Antarctic ice sheet. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 32747.) [Presents results of analysis of glaciological data published up to 1966. Characterizes dimensions, form, and regime of ice sheet. Computes distributions of velocity, strain rate, shear stress, temperature, rate of melting at bottom, and of age of ice for a stationary axi-symmetrical model of ice sheet.]Google Scholar
Shumskiy, P. A. Dinamicheskaya glyatsiologiya [Dynamic glaciology]. Itogi Nauki. Seriya Geografiya. Gidrologiya Sushi. Glyatsiologiya, 1968, [pub.] 1969, 172 p. [Physics of glacier How.]Google Scholar
Sokolov, D. P. O dvizhenii nizhney chasti yazyka Zeravshanskogo lednika [On the movement of the lower part of the Zeravshan glacier tongue]. Izvestiya Vsesoyuznoga Geograficheskogo Obshchestva, Tom 102, Vyp. 3, 1970, p. 29496. [Observations on the central Asian glacier.]Google Scholar
Specht, K.-W. Sur les glaciers des quatre mille valaisans. Les Alpes. Revue du Club Alpin Suisse, 45e An., 3e Trimestre, 1969, p. 12933. [Describes ascents of Hochzeitsberg, Alphubel, Weissmies and Bishorn, in Switzerland, mentioning associated glaciers.]Google Scholar
Stenbokg, T. Delay of run-off from a glacier basin. Geografiska Annaler, Vol. 52A, No, 1, 1970, p. 130, [Observations at Mikkaglaciären, Sweden, show that 25% of total discharge was delayed from early to middle summer.]Google Scholar
Stephens, F. R. A forest ecosystem on a glacier in Alaska. Arctic, Vol. 22, No. 4, 1969, p. 44144. [Describes ecosystem on Kushtaka Glacier. Soil depth 20-40 inches. Spruce almost eliminating alder, but ice melting rapidly destroying ecosystem.]CrossRefGoogle Scholar
Stephenson, P. J. Some aspects of shallow snow metamorphism at Southice, Antarctica. (In [Union Géodésique… . ]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 23142.) [Further results presented of investigations on snow and firn to 45 m depth curried out at Southice, near Whichaway Nunataks, winter 1967.]Google Scholar
Swithinbank, C. W. M Ice movement in the McMurdo Sound area of Antarctica. (In [Union Géodésique…]… International Symposium on Antarctic Glaciologicat Exploration (ISAGE), . . 1968, 1970. p. 47287.) [Rates of movement of Ross Ice Shelf. Depth determined in accumulation areas and intermittently in ablation areas. Depth measurement impracticable where brine soaking occurs.]Google Scholar
Thyssen, F. Ahmad, M. Ergebnisse seismischer Messungen auf dem Aletschgletscher, Polarforschung, Bd. 6, Jahrg. 39, Nr. 1, 1969 [pub. 1970], p. 28393. [Seismic measurements on Grosser Aletschgletscher, Switzerland. Variation of wave velocities with depth, deduction of water content and ice thickness. English abstract.]Google Scholar
Tronov, M. V., ed. Glyatsiologiya Altaya, Vyp. 5 [Glaciology of the Allay, Vyp. 5]. Tomsk, Izdatel’stvo Tomskogo Universiteta, 1967, 264 p.Google Scholar
Vinogradov, V. N. Basseyny rek Tikhogo Okeana (Okhotskoye i Beringovo Morya) [Basins of rivers of the Pacific Ocean (Okhotsk and Bering Seas)]. Katalog lednikov SSSR [Catalogue 0/ glaciers of the U.S.S.R.], Tom 20, Chasti 2-4. Leningrad, Gidrometeorologicheskoye Izdatel’stvo, 1968, 76 p.Google Scholar
Vivian, R. Hydrologie. Géographie des températures d’un cours d’eau glaciaire népalais: la Modi Khola. Revue de Géographie Alpine, Tom. 58, Fasc. 2, 1970, p. 39395. [Study of temperature of glacial streams below Annapurna, Nepal.]CrossRefGoogle Scholar
Vivian, R. Hydrologie et érosion sous-glaciaires. Revue de Géographie Alpine, Tom. 58, Fasc. 2, 1970, p. 24164. [Study of sub-glacial melt-water streams and erosion by them and by glacier ice. English summary.]CrossRefGoogle Scholar
Vivian, R. La nappe phréatique du glacier d’Argentière (massif du Mont Blanc). Comptes Rendus Hebdomadaires des Séances de l’Académie des Sciences (Paris), Sér. D, Tom. 270, No. 4, 1970, p. 60406. [From study of water table observed at glacier d’Argentière, France, idea of glacial water table is assessed.]Google Scholar
Vivian, R. Constantin, B. Fiches de glaciers français. Le glacier de la Plate des Agneaux. Revue de Géographie Alpine, Tom. 58, Fasc. 3, 1970, p. 58588. [Summary of knowledge of this glacier.]CrossRefGoogle Scholar
Vivian, R. Constantin, B. Fiches des glaciers français. Les glaciers de la Meije: Rateau, Meije et Tabuchet. Revue de Géographie Alpine, Tom. 58, Fasc. 3, 1970, p. 58184. [Summary of knowledge of these glaciers.]CrossRefGoogle Scholar
Vivian, R. Derrouch, P. Fiches des glaciers français. Le glacier de Bionnassay. Revue de Géographie Alpine, Tom. 58, Fasc. 2, 1970, p. 42527. [Summary of knowledge of this glacier.]CrossRefGoogle Scholar
Vivian, R. Frayssinet, M. Fiches des glaciers français. Le glacier de Tré-la-Tête. Revue de Géographie Alpine, Tom. 58, Fasc. 2, 1970, p. 42124. [Summary of knowledge of this glacier.]CrossRefGoogle Scholar
Wales, R. J. The lateral moraine of the lower Arolla glacier. Geographical Articles (Cambridge), No. 8, 1967, p. 816. [Results of field work in Switzerland, 1966.]Google Scholar
Weertman, J. A method for setting a lower limit on the water layer thickness at the bottom of an ice sheet from the time required for upwelling of water into a borehole. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 6973.) [Shows that knowledge of half lime can be used to set at least a lower limit to thickness of water layer.]Google Scholar
Woldenberg, M. J. Hierarchical systems; cities, rivers, alpine glaciers, bovine livers and trees. Dissertation Abstracts International, B, Vol. 30, No. 2, 1969, p. 705-B06-B. [Application of theory of hierarchical system to, among other things, valley glaciers. Abstract of Ph.D. thesis, Columbia University, 1968. University Microfilms order no. 69-13007.]Google Scholar
Wright, F. W. Hodge, P. W. The question of the origin of the magnetic spherules found in Antarctic ice. ((In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE), … 1968, 1970 p. 4247.) [Reviews and discusses recent work on magnetic spherules and suggests spherules found in South Pole ice samples may be ablation products from very large cometary meteors.]Google Scholar
Yablokov, A. A. Ledniki verkov’yev r. Chu [Glaciers of the upper Chu river]. Izvestiya Vsesoyuznogo Geograficheskogo Obshchestva, Tom 102, Vyp. 3, 1970, p. 29697. [Description of glaciers in this region of Tyan’-Shan.]Google Scholar

Icebergs. Sea, River and Lake Ice

Assur, A. Antarctic sea ice. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 543.) [Abstract. Deals with properties of perennial and seasonal Antarctic sea ice.]Google Scholar
Bolsenga, S. J. Total albedo of Great Lakes ice. Water Resources Research, Vol. 5, No. 5, 1969, p. 113233. [Measurement of total albedo of various types of ice common to Great Lakes.]CrossRefGoogle Scholar
Brochu, M. Le processus de déglacement du fjord de Maricourt au Nouveau-Québec: description et interprétation. Revue de Géographie Alpine, Vol. 58, Fasc. 3, 1970, p. 53743. [Mechanism by which sea ice leaves this fjord in summer.]CrossRefGoogle Scholar
Bugayev, V. A. Polozheniye kromki l’dov i tsiklonicheskaya deyatel’nost’ v Yuzhnom Okeane [The position of the ice edge and cyclonic activity in the Southern Ocean]. Antarktika. Doklady Komissii, 1967, 1969, p. 3640. [Studies since 1962.] Google Scholar
Bunt, J. S. Mieroalgac of the Antarctic pack zone. (In Symposium on Antarctic oceanography, Santiago, Chile, 13-16 September 1966. Cambridge, Scott Polar Research Institute for Scientific Committee on Antarctic Research. 1968, p. 198218.) [Primary production in Antarctic waters related to potential of ice layer as centre for development of photosynthetic organisms. Discusses hypothesis and suggests research.]Google Scholar
Clarke, P. C. Arctic sea-ice in summer. Weather, Vol. 25, No. 5, 1970, p. 21418. [Reports and discusses increase of sea ice during summer (and winter) off coast of east Greenland.)CrossRefGoogle Scholar
Dorofeyev, YE. P. Ledyanyye kristally v ozerakh Kungurskoy peshchery [Ice crystals in the lakes of the Kungur cave], Priroda, 1970, No. 4, p. 105. [Western Urals.]Google Scholar
Farmer, D., Observations of ice drift from a manned drifting station in the Gulf of St. Lawrence. [by]Farmer, D.,Johannessen, O.M,Keys, J.E,Pounder, E.R,Serson, H. Journal of Geophysical Research, Vol. 75, No. 15, 1970, p. 286367. [Study of ice drift over 6-day period.]CrossRefGoogle Scholar
Foster, T. D. Experiments on haline convection induced by the freezing of sea water. Journal of Geophysical Research, Vol. 74, No. 28, 1969, p. 696774. [Laboratory study of convection below freezing layer of sea ice.]CrossRefGoogle Scholar
Hamelin, L-E Le glaciel de Iakoutie, en Sibérie nordique. Cahiers de Géographie, de Québec, 13e An., No. 29, 1969. p. 20516. [Observations on geomorphological effects of floating ice in Yakutiya, Siberia.]Google Scholar
Johannessen, O. M. Note on some vertical profiles below ice floes in the Gulf of St. Lawrence and near the North Pole. Journal of Geophysical Research, Vol. 75, No. 15, 1970, p. 285761. [Water velocity profiles measured and used to determine roughness and boundary layer thickness.]CrossRefGoogle Scholar
Johnson, J. D. Sea ice forecasting in McMurdo Sound and the Ross Sea. (In Symposium on Antarctic oceanography, Santiago, Chile, 13-16 September 1966. Cambridge, Scott Polar Research Institute for Scientific Committee on Antarctic Research, 1968, p. 22021.) [Reports results of investigations on feasibility of ice forecasting in Antarctic waters, carried out by U.S. Naval Oceanographic Office.)Google Scholar
Jones, J. A. A The growth and significance of white ice at Knob Lake, Quebec. Canadian Geographer, Vol. 13, [No.] 4, 1969, p. 35472. [Study of growth of lake ice due to flooding and freezing.]CrossRefGoogle Scholar
Kozlovskiy, A. M. K voprosu o tayanii materikovogo l’da v morskoy vode [On the problem of glacier ice melting in sea water]. Informatsionnyy Byulleten’ Sovetskoy Anlarkticheskoy Ekspeditsii, No. 75, 1969, p. 3842. [February-December 1967. Experiments with ice samples taken from icebergs and suspended in sea water near Antarctic coast.]Google Scholar
Kusunoki, K., Distribution and character of sea ice in the vicinity of Syowa station, Antarctica, byKusunoki, K.,Yoshida, Y.,Ishida, T. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 542.) [Abstract, Observations from 1956 to 1967 off coast of Dronning Maud Land.]Google Scholar
Lake, R. A. Lewis, E. L. Salt rejection by sea ice during growth. Journal of Geophysical Research, Vol. 75, No. 3, 1970, p. 58397 [Salt rejection shown to take place by cyclic convective processes in small interstitial spaces in bottom centimetres of ice.]CrossRefGoogle Scholar
Limbert, D. W. S The thermal balance of sea ice at Halley Ray. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 52041.) [Compares magnitude of heat Duxes on sea ice and over ice shelf, and determines insulating effects of snow cover on sea ice.)Google Scholar
Malmberg, S-A. Ástand sjávar milli Islands og Jan Mayen og hafis viô Island. gir, Arg. 62, No. 22, 1969. p. 41011, 413. [Temperature and salinity conditions between Iceland and Jan Mayen and relationship with pack ice occurrence in north Icelandic waters. English summary.]Google Scholar
Malmberg, S-A. Hafis fyrir Vestfjor∂um í lok april 1969 og straummæling i Lätraröst. Nätturufæ∂ingurinn, Árg. 39, Ht. 3–4, 1969[pub. 1970], p. 24350. [Pack ice off north-west Iceland in April 1969. English summary,]Google Scholar
Maykut, G. A. A thermodynamic model of sea ice. Dissertation Abstracts International, B, Vol. 30, No. 5, 1969, p. 2329-B30-B. [One-dimensional model of thermal processes in sea ice developed and applied to central Arctic. Abstract of Ph.D. thesis, University of Washington, 1969. University Microfilms order no. 69-18300.]Google Scholar
Mills, D. A. The influence of pack ice un ocean waves. Bedford Park, South Australia, Horace Lamb Centre for Oceanographical Research, Flinders University, 1967. [98] p. (Survey Paper No. 5.) [Mathematical consideration of actual mechanisms involved.]Google Scholar
Milne, A. R. The transition from moving to fast ice in western Viscount Melville Sound. Arctic, Vol. 23, No. 1, 1970, p. 4546. [Underwater noise as method of detecting movement of ice.)CrossRefGoogle Scholar
Mykup, L.,, Upside down convection, byMyrup, L.,Gross, D.,Hoo, L.S,Goddard, W. Weather, Vol. 25, No. 4, 1970, p. 15057. [Study of convection in water over ice.]Google Scholar
Newuury, R. W. The Nelson River: a study of subarctic river processes. Dissertation Abstracts, B, Vol. 29, No. 9. 1969, p. 3308-B. [Study of ice conditions on this Canadian river. Abstract of Ph.D. thesis, Johns Hopkins University, 1968. University Microfilms order no. 69-5200.]Google Scholar
Ovenshine, A. T. Observations of iceberg rafting in Glacier Bay, Alaska, and the identification of ancient ice-rafted deposits. Geological Society of America. Bulletin, Vol. 81, No. 3, 1970, p. 89194.CrossRefGoogle Scholar
Robin.DE , G. Q Pack ice and waves. (In Symposium on Antarctic oceanography, Santiago, Chile, 13-16 September 1966. Cambridge, Scott Polar Research Institute for Scientific Committee on Antarctic Research, 1968, p. 19197.) [Survey of recent work and problems, with reference to gravity waves specifically.]Google Scholar
Romanov, A. A. O srednikh tolshchakh dreyfuyushchikh l’dov v vostochnoy chasti antarkticheskikh vod [The mean thickness of the drifting pack ice in the seas off eastern Antarctica]. Informatsionnyy Byulleten’ Sovetskoy Antarkticheskoy Ekspedilsii, No. 73, 1969, p. 2226.Google Scholar
Schwerdtfecier, P. Sea ice: Antarctic aspects. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 51120.) [Discusses relevance and limitations of theoretical and laboratory investigations of sea ice for Antarctic]Google Scholar
Skov, N. A. The ice cover of the Greenland Sea. An evaluation of océanographie and meteorological causes for year-to-year variations. Meddelelser om Grønland, Bd. 188, Nr. 2, 1970, 56 p.Google Scholar
Smith, S. D., Wind stress and turbulence over ice in the Gulf of St. Lawrence, [by] Smith, S.D,Banke, E. G.,Johannessen, O.M Journal of Geophysical Research, Vol. 75, No. 15, 1970. p, 280313. [Measurement of wind turbulence over sea ice and deduction of drag coefficient.]CrossRefGoogle Scholar
Spetzler, H. A. W Effect of temperature and partial melting on velocity and attenuation in a simple binary system. Dissertation Abstracts International, B, Vol. 30, No. 7, 1970, p. 3349-B. [Study on NaCl-ice system. Acoustic wave propagation. Abstract of Pt. I of Ph.D. thesis, California Institute of Technology. University Microfilms order No. 70-1421.]Google Scholar
Vinje, T. E. Some observations of the ice drift in the East Greenland Current. Norsk Polarinstitutt. Årbok, 1968[pub. 1970], p. 7578.Google Scholar
Wagner, W. P. Ice movement and shoreline modification, Lake Champlain, Vermont. Geological Society of America. Bulletin, Vol. 81, No. 1, 1970, p. 11726. [Study of lake ice, its on-shore movement, and the effect on the shoreline.]CrossRefGoogle Scholar
Weeks, W. F. Understanding the variations of the physical properties of sea ice. (In Symposium on Antarctic oceanography, Santiago, Chile, 13-16 September 1966. Cambridge, Scott Polar Research Institute for Scientific Committee on Antarctic Research, 1968, p. 17390.) [Survey of current problems.]Google Scholar
Wendler, G. Some measurements of the extinction coefficients of river ice. Polarforschung, Bd. 6, Jahrg. 39, Nr. 1, 1909 [pub. 1970], p. 25356. [Variation of intensity of transmitted light with thickness for different wavelengths.]Google Scholar
Williams, G. P. Water temperature during the melting of lake ice. Water Resources Research, Vol. 5, No. 5, 1969, p. 113438. [Water temperature under ice cover at White Lake, Ontario, Canada, increased substantially during thaw period.]CrossRefGoogle Scholar
Wooster, W. S., Redefinition of salinity, by Wooster, W.S,Lee, A.J,Dietrich, G. Zeitschrift für Geophysik, Bd. 35, Ht. 6, 1969, p. 61113. [Letter. New internationally agreed definition.]Google Scholar

Glacial. Geology

Abele, G. Vom Eis geformte Bergsturzlandschaften, Zeitschrift für Geomorphologie, Supplementband 8, 1969, p. 11947. [Discussion of origin of "toma" hills and other features of landslides which override, contain, or are overriden by ice. English and French summaries.]Google Scholar
Andersen, B. G. Bresjö-avsetninger ved Tynset i Österdalen. Norsk Geologisk Tidsskrift, Vol. 49, No. 3, 1969, p. 289311. [Deposits from ice-dammed lakes at Tynset in Österdalen valley, south Norway. Field work in 1967 and 1968. English summary.)Google Scholar
Andrews, J. T. Differential crustal recovery and glacial chronology (6,700 to o BP), west Baffin Island, N.W.T., Canada, Arctic and Alpine Research. Vol. 2, No. 2, 1970, p. 11534.CrossRefGoogle Scholar
Bartkowski, T. Déglaciation zonale—la déglaciation normale des pays bas (expliquée sur l’exemple de la déglaciation de la plaine de la Grande Pologne--Wielkopolska). Geographia Polonica, [No.] 16, 1969, p. 12136. [Discussion of process of déglaciation of a lowland plain.]Google Scholar
Bertouille, H. Quaternaire de l’Artois (France). Biulelyn Peryglacjainy, No. 19, 1969, p. 584. [Description of very old periglacial deposits in this region of France, English abstract.]Google Scholar
Blake, W.jr Studies of glacial history in Arctic Canada. I. Pumice, radiocarbon dales, and differential uplift in the eastern Queen Elizabeth Islands. Canadian Journal of Berth Sciences, Vol. 7, No. 2, Pt. 2, 1970, p. 63464. [Use of old shorelines to deduce former ice centres.]Google Scholar
Bortenschkacer, S. Patzelt, G. Wärmezeitliche Klima- und Gletscherschwankungen im Pollenprofil eines hochgelegenen Moores (2270 m) der Venedigergruppe. Eiszeitalter und Gegenwart, Bd. 20, 1969, p. 11622. [Identification of three post-glacial periods with glacier advance in this region of the Alps. English abstract.]Google Scholar
Broecker, W. S. Donk.Van, J. Insolation changes, ice volumes, and the 018 record in deep sea cores. Reviews of Geophysics and Space Physics, Vol.8, No. 1, 1970, p. 16998. [Oxygen isotope ratio as indicator of ice volume. Saw-toothed nature of time variation. Possible orbital causes.]CrossRefGoogle Scholar
Drake, L. D. Till studies in New Hampshire. Dissertation Abstracts, B, Vol. 29, No. 9, 1969, p. 3363-B. [Study of pebble shapes and orientations and theory of till deposition. Abstract of Ph.D. thesis, Ohio State University, 1968. University Microfilms order no. 69-4877.]Google Scholar
Everett, K. R. Behling, R. E. Chemical and physical characteristics of Meserve Glacier morainal soils, Wright Valley, Antarctica: an index of relative age? (In [Union Géodésique. …]… International Symposium on Antartic Glaciological Exploration (ISAGE),… 1968, 1970. p. 45960.) [Abstract. Soil sampling and weathering index studies carried out on moraine complex of glacier to determine if age differences among major moraines would become apparent in morphology, chemistry, or clay mineralogy of soil profiles, permafrost depths or surace weathering characteristics. Outermost moraine appears to be oldest.]Google Scholar
Flohn, H. Ein geophysikalisches Eiszeit-Modell. Eiszeilalter und Gegenwart, Bd. 20, 1969, p. 20431. [Suggests theory for development of ice ages. English abstract.)Google Scholar
Ford, D. C., Calcite precipitates at the soles of temperate glaciers, [by] Ford, D.C,Fuller, P.G,Drake, J.J Nature, Vol. 226, No. 5244. 1970, p. 44142. [Letter. Deposits near Mt. Castleguard, Alberta, Canada, attributed to recently retreated glaciers.)CrossRefGoogle ScholarPubMed
Frakes, L. A. Crowell, J. C. Late Palaeozoic glacial facies and the origin of the South Atlantic Basin. Nature, Vol. 217, No. 5131, 1968, p. 83738. [Strata subdivided into several environmentally significant facies, and conclusions discussed.]CrossRefGoogle Scholar
Gerber, E. Bildung und Formen von Gratgipfeln und Felswänden in den Alpen. Zeitschrift für Geomorphologie, Supplementband 8, 1969, p. 94118. [Weathering and erosion processes which produce ridges and rock walls in the Alps. English and French summaries.)Google Scholar
Goldthwait, R. P. Mountain glaciers of the Presidential Range in New Hampshire. Arctic and Alpine Research, Vol. 2, No. 2, 1970, p. 85102. [Deduction of Pleistocene glaciation in this area of U.S.A.]CrossRefGoogle Scholar
Gough, D. I. Did an ice cap break Gondwanaland? Journal of Geophysical Research, Vol. 75, No. 23, 1970, p. 447577. [Discusses possibility that stress caused by ice sheet caused flow in asthenosphere, fractured lithosphere, and separated the southern continents.]CrossRefGoogle Scholar
Guilcher, A. Pleistocene and Holocene sea level changes. Earth-Science Reviews, Vol. 5, No. 2, 1969, p. 6997. [Discussion of glacio-eustatic theory.]CrossRefGoogle Scholar
Harris, S. A. The meaning of till fabrics. Canadian Geographer, Vol. 13, [No.] 4, 1969, p. 31737. [Study of reliability of till fabric studies in till diagnostics.]CrossRefGoogle Scholar
Herrmann, R. Vorelsterzeitliche Karsttaschen mit Terra-fusca-Füllung in der Kreide von Meerdorf im Landkreis Braunschweig. Eiszeitalter und Gegenwart, Bd. 19, 1968, p. 18389. [Describes kettle holes near Meerdorf, Braunschweig, Germany.]Google Scholar
Hoppe, G., Studies of the glacial history of Hopen (Hopen Island), Svalbard, byHoppe, G.,Schytt, V.,Häggblom, A.,Österholm, H. Geografiska Annaler, Vol. 51A, No. 4, 1969, p. 18592. [Studies of geomorphology and of rate of uplift. Deduction of glacial history.]CrossRefGoogle Scholar
Johnson, J. P.jr. Deglaciation of the central Nain-Okak Bay section of Labrador. Arctic, Vol. 33, No, 4, 1969, p. 37294. [Suggests history of former ice cover; supported by field work.]Google Scholar
King, C. A. M Moraine types on Henry Kater Peninsula, east Baffin Island, N.W.T., Canada. Arctic and Alpine Research, Vol. 1, No. 4, 1969, p. 28994. [Analysis of observations of morphology, till fabric and stone roundness.]CrossRefGoogle Scholar
Laverdiere, C. Bernard, C. Bibliographie annotée sur les broutures glaciaires: An annotated bibliography on glacial chattermarks. Revue de Géographie de Montréal, Vol. 24, No. 1, 1970, p. 7989. [Lists chiefly publications in English and French, with note on terminology used in each.]Google Scholar
Mckenzie, G. D. Glacial history of Adams Inlet, southeastern Alaska. Dissertation Abstracts International, B, Vol. 30, No. 1, 1969, p. 260-B. [Abstract of Ph.D. thesis, Ohio State University, 1968. University Microfilms order no. 69-11676.]Google Scholar
Mcpherson, H. J. Landforms and glacial history of the upper North Saskatchewan valley, Alberta, Canada. Canadian Geographer, Vol. 14, [No].1 , 1970, p. 1026.CrossRefGoogle Scholar
Mcpherson, H. J. Gardner, J. S. The development of glacial landforms in the vicinity of the Saskatchewan Glacier. Canadian Alpine Journal, Vol. 52, 1969, p. 9096. [Details of recession since 1854 and of landforms left behind.]Google Scholar
Madole, R. F. Pinedale and Bull Lake glaciation in upper St. Vrain drainage basin, Boulder County, Colorado. Arctic and Alpine Research, Vol. 1, No. 4, 1969, p. 27987. [Glacial history of this area of U.S.A.]CrossRefGoogle Scholar
Mandich, P. A. Comment on some ice age theories. Quartar, 20. Bd., 1969, p. 12734. [Discusses need for synthesis between various theories.]Google Scholar
Mercer, J. H. The Allerød oscillation: a European climatic anomaly? Arctic and Alpine Research, Vol. 1, No. 4. 1969, p. 22734. [Suggests cause of end of warm period was increasing ice in North Atlantic Ocean as ice shelves broke up in Arctic Ocean.]CrossRefGoogle Scholar
Mercer, J. H. A former ice sheet in the Arctic Ocean? Palaeogeography, Palaeoclimatology, Palaeoecology, Vol. 8, No. 1, 1970, p. 1927. [Discusses similarity between Arctic Ocean and basin under west Antarctic ice sheet, and possibility of an Arctic ice sheet during earlier glacial periods.]CrossRefGoogle Scholar
Mercer, J. H. Variations of some Patagonian glaciers since the Late-Glacial: II. American Journal of Science, Vol. 269, No. 1, 1970, p. 125. [Glacier variations in Chilean Patagonia.CrossRefGoogle Scholar
Michalska, Z. Problems of the origin of eskers based on the examples from central Poland. Geographia Polonica, [No].16 , 1969, p. 10519.Google Scholar
Owens, E. H. Mccann, S. B. The role of ice in the Arctic beach environment with special reference to Cape Ricketts, southwest Devon Island, Northwest Territories, Canada. American Journal of Science, Vol. 268, No. 5, 1970, p. 397414. [Formation of ice mounds and ice-push ridges. Meteorological and ice cover data.]CrossRefGoogle Scholar
Paramonov, B. A. Deshiferirovaniye deformatsiy na poverkhnosti sovremennoy moreny Tuyuksuyskikh lednikov [Deciphering of deformations on the surface of the Recent moraines of the Tuyuksu glaciers]. Vestnik Moskovskogo Universiteta, Ser. 5, 25 God, [No].1 , 1970, p. 10710, [Interpretation of aerial photograph to give information on thermokarst phenomena. English abstract.]Google Scholar
Pillewizer, W. Die Bewegung der Gletscher und ihre Wirkung auf den Untergrund. Zeitschrift für Geomorphologie, Supplementband 8, 1969, p. 110. [Glaciers with block movement may be expected to be very active in erosion. English and French abstracts.]Google Scholar
Porter, S. C. Quaternary glacial record in Swat Kohistan, West Pakistan. Geological Society of America. Bulletin, Vol. 81, No. 5, 1970, p. 142146. [Description of evidence of extent of glaciation in this area.]CrossRefGoogle Scholar
Price, R. J. Moraines at Fjallsjökull, Iceland. Arctic and Alpine Research, Vol. 2, No. 1, 1970, p. 3742. [Discussion of process of formation of end moraines on basis of detailed study of location and structure.]CrossRefGoogle Scholar
Radlowska, C. On the problematics of eskers. Geographia Polonica, [No].16 , 1969, 87103. [Study of a particular esker and its origin.]Google Scholar
Righmond, G. M. Development and stagnation of the last Pleistocene icecap in the Yellowstone Lake basin, Yellowstone National Park, USA. Eiszeitalter und Gegenwart, Bd. 20, 1969, p, 196203. [Reconstruction of glacial history.]Google Scholar
Shghukin, I. S, O nekotorykh voprosakh geomorfologii Bol’shogo Kavkaza [On some question of the geomorphology of the Great Caucasus]. Vestnik Moskovskogo Universiteta, Ser. 5, 25 God, [No].1 , 1970, p. 2834. [Questions interpretation of "denuded surfaces" in this area of central Caucasus as young glacially produced formations. English summary.]Google Scholar
STÄblein, G. Die pleistozäne Vereisung und ihre isostatischen Auswirkungen im Bereich des Bellsunds (West-Spitzbergen). Eiszeitalter und Gegenwart, Bd. 20, 1969, p. 12330. [Study of Pleistocene and present glacierization and isostatic effects in this part of Spitsbergen. English abstract.]Google Scholar
Synge, F. M, The raised shorelines and deglaciation chronology of Inari, Finland, and south Varanger, Norway. Geografiska Annaler, Vol. 51 A, No. 4, 1969, p. 193206.CrossRefGoogle Scholar
Weisse, R. Endmoränen oder Oser östlich von Glöwen. Geographische Berichte, 13. Jahrg., Ht. 4, [Nr.] 4g, 1968, p. 27791. [Discussion of nature of these hills formerly thought 10 be extreme end moraine of Brandenburg stage in this part of Germany. English summary.]Google Scholar
Yoshida, Y. Glacio-geological survey on the Kronprins Olav Kyst, Antarctica (extended abstract). (In [Union Géodésicme. ,..]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 46163.] [Geomorphological surveys on ice-free areas near "Syowa" base, 1967-68, included observations on raised beaches and glaciated landforms.]Google Scholar
Young, G. M. An extensive early proterozoic glaciation in North America? Palaeogeography, Palaeoclimatology, Palaeoecology, Vol. 7, No. 2, 1970, p. 85101. [Evidence for such a glaciation.]CrossRefGoogle Scholar
Yrenkov, G. I. Opyt kharakieristiki osobennostey prirodno-territorial’nykh kompleksov konechnomorennykh obrazovaniy [Study of characteristic peculiarities of natural-territorial end moraine formations]. Izvestiya Vsesoyuznogo Geograficheskogo Obshchestva, Tom 102, Vyp. 2, 1970, p. 16063. [Study of end moraines.]Google Scholar

Frost Action on Rocks and Soil. Frozen Ground. Permafrost

Baranowski, S. The origin of fluted moraine at the fronts of contemporary glaciers. Geografiska Annaler, Vol. 52A, No, 1, 1970, p. 6875. [Frost action suggested as formative mechanism. Observations at Werenskioldbreen, Spitsbergen, in 1957-60 and 1962.]CrossRefGoogle Scholar
Barsch, D. Studien und Messungen an Blockgletschern in Macun, Unterengadin. Zeitschrift für Geomorphologie, Supplementband 8, 1969, p. 1130. [Classification of rock glaciers and measurements of movement, crevasses and microrelief development. English and French summaries.]Google Scholar
Berg, T. E. Fossil sand wedges at Edmonton, Alberta, Canada. Biuletyn Peryglacjalny, No. 19, 1969, p. 32533. [Description and climatic implications.]Google Scholar
Bik, M. J. J The origin and age of the prairie mounds of southern Alberta, Canada. Biuletyn Peryglacjalny, No. 19, 1969, p. 85130. [Suggests these mounds are periglacial not, as hitherto supposed, glacial in origin.]Google Scholar
Black, R. F. Thaw depressions and thaw lakes. A review. Biuletyn Peryglacjalny, No. 19, 196g, p. 13150. [Review of North American knowledge of these phenomena.]Google Scholar
Brown, R. J. E Permafrost in Canada: its influence on northern development. Toronto, University of Toronto Press, 1970. viii, 234 p. [Scientific and engineering aspects of frozen ground and its effect on building and other economic activities.]Google Scholar
Chambers, M. J. G Investigations of patterned ground at Signy Island, South Orkney Islands: IV. Long-term experiments, British Antarctic Survey Bulletin, No. 23, 1970, p. 93100. [Study of movements from 1962 to 1968.]Google Scholar
Ferrians, O. J.jr, Permafrost and related engineering problems in Alaska, by Ferrians, O.J.Jr,Kachadoorian, R.,Greene, G.W U.S. Geological Survey. Professional Paper 678, 1969, 37 p. [Discusses distribution and nature of permafrost in Alaska.]Google Scholar
Gerhold, N. Zur Glazialgeologie der westlichen Ötztaler Alpen unter besonderer Berücksichtigung des Blockgletscherproblems. Veröffentlichungen des Museum Ferdinandeum in Innsbruck, Bd. 49, 1969, p. 4578. [Study of glacial geology, and particularly rock glaciers, in this part of Austria.]Google Scholar
Gorbunov, A. P. La région périglaciaire du Tian-Chan. Biuletyn Peryglacjalny, No. 19, 1969, p. 15174. [Periglacial features observed in the Tyan’-Shan.]Google Scholar
Hails, J. R. White, P. C. S Periglacial features of Walton-on-Naze, Essex. Proceedings of the Geologists’ Association, Vol. 81, Pt. 2. 1970, p. 20519. [Observations of frost action during at least two periods in this part of England.]CrossRefGoogle Scholar
Kostyayev, A. G. Diagenetic ground veins in the present-day alluvium of the lower Omoloj river-basin. Biuletyn Peryglacjalny, No. 19, 1969, p. 33543. [Development of these structures in Recent alluvial deposits in north-east Siberia.]Google Scholar
Kostyayev, A. G. Wedge- and fold-like diagenetic disturbances in Quaternary sediments and their paleogeographic significance. Biuletyn Peryglacjalny, No. 19, 1969, p. 23170. [Review of processes which can produce these soil structures: 259 references.]Google Scholar
Lewin, J. The formation of chalk dry valleys: the Stonehill valley, Dorset. Biuletyn Peryglacjalny, No. 19, 1969, p. 34550. [Difficulty of ascribing a purely periglacial origin to some chalk dry valleys.]Google Scholar
Malaurie, J. Effets relatifs de la gélifraction en haute latitude. Observations en Terre d’Inglefield (nord-ouest du Groenland) et études expérimentales. Revue des Sociétés Savantes de Haute Normandie, No. 50, 1968, p. 5767. [Describes investigations into frost shattering of rocks in Inglefield Land, north-west Greenland.]Google Scholar
Markov, K. K. Les phénomènes périglaciaires et leur répartition. Biuletyn Peryglacjalny, No. 19, 1969, p. 27175. [Conditions required for periglacial phenomena, and where they occurred during the Pleistocene. English abstract.]Google Scholar
Martini, A. Sudetic tors formed under periglacial conditions. Biuletyn Peryglacjalny, No. 19, 1969, p. 35169. [Frost weathering as origin of these features.]Google Scholar
Mudrov, YU. V comp. Bibliography of the papers on periglacial morphology published by Soviet writers in 1960-1966. Biuletyn Peryglacjalny, No. 19, 1969, p. 42396. [Classified bibliography with English translations of titles.]Google Scholar
Penner, E. Thermal conductivity of frozen soils. Canadian Journal of Earth Sciences, Vol. 7, No. 3, 1970, p. 98287. [Measurements and correlation of results with ice content.]CrossRefGoogle Scholar
Perov, V. F. Block fields in the Khibiny Mts. Biuletyn Peryglacjalny, No. 19, 1969, p. 38187. [Description and discussion of origin.]Google Scholar
Popov, A. I. O geneticheskoy sisteme periglyatsial’nykh obrazovaniy [On the genetic system of periglacial formations]. Vestnik Moskovskogo Universiteta, Ser. 5, 25 God, [No].1 , 1970, p. 5358. [Suggests basis for a genetic classification of periglacial formations. English abstract.]Google Scholar
Scholz, E. Der durch kryogenetische Prozesse und Thermokarst-Vorgänge geschaffene Formenschatz. Geographische Berichte, 15. Jahrg., Ht. 1, [Nr.] 54, 1970, p. 2241. [Periglacial landforms discussed with view to unified legend for geomorphological maps. English summary.]Google Scholar
Sekyra, J. Periglacial phenomena in the oases and the mountains of the Enderby Land and the Dronning Maud Land (east Antarctica). Preliminary report. Biuletyn Peryglacjalny, No. 19, 1969, 27789. [Study of erosion and solifluction processes in this sector of Antarctica.]Google Scholar
Soons, J. M. Greenland, D. E. Observations on the growth of needle ice. Water Resources Research, Vol. 6, No. 2, 1970, p. 57993. [Field and laboratory observations.]CrossRefGoogle Scholar
Svensson, H. Open fissures in a polygonal net on the Norwegian Arctic coast. Biuletyn Peryglacjalny, No. 19, 1969, p. 38998. [Fissures in peat in polygonal ground. Discussion of origin.]Google Scholar
Tufnell, L. The range of periglacial phenomena in northern England. Biuletyn Peryglacjalny, No. 19, 1969, p. 291323. [Describes the considerable variety of periglacial forms visible in northern England.]Google Scholar
Urbaniak, U. Les sables de couverture, les cryoturbations et les fractures dans les dunes du Bassin de Plock. Biuletyn Peryglacjalny, No. 19, 1969, p. 399422. [Study of features in this region of Poland. English abstract.]Google Scholar
Vostokova, A. V. Otobrazheniye merzlotnogo rel’yefa v kompleksnykh atlasakh [The representation of permafrost relief in complex atlases]. Vestnik Moskovskogo Universiteta, Ser. 5, 25 God, [No].2 , 1970, p. 11418. [Suggests improvements in representation. English summary.]Google Scholar
WroŃski, J. Morfogeneza plejstoceńska górnegi dorzecza Bobru w swietle pokryw peryglacjalnych [Pleistocene morphology of the watershed area of the upper Bńbr river in the light of its periglacial cover deposits]. Czasopismo Geograficzne, Tom 40, Zeszyt 4, 1969, p. 45771. [Study of periglacial phenomena in this region of Poland, English summary, p. 47071.]Google Scholar

Meteorological and Climatological Glaciology

Biguria, O. The moving boundary problem with frost deposition to a flat plate at subfreezing temperatures and forced convection conditions. The measurement and correlation of H2O frost properties. Dissertation Abstracts, B, Vol. 29, No. 5, 1968, p. 1647-B. [Abstract of Ph.D. thesis, Lehigh University, 1968. University Microfilms order no. 68-15894.]Google Scholar
Burrows, D. A, The role of ice in cloud electrification, Dissertation Abstracts International, B, Vol, 30, No. 2, 1969, p. 783-B. [Studies in natural clouds and snowfall of charges separated by collision of particles with an ice surface. Abstract of Ph.D. thesis, University of Washington, 1968. University Microfilms order no, 69-13543.]Google Scholar
Darberdt, W. F. A selective climatology of Plateau station, Antarctica. Journal of Applied Meteorology, Vol. 9, No. 2, 1970, p. 31115. [Summary of most interesting features.]2.0.CO;2>CrossRefGoogle Scholar
Escher, H. Die Bestimmung der klimatischen Schneegrenze in den Schweizer Alpen. Geographica Helvetica, 25. Jahrg., [Ht.] 1, 1970, p. 3543. [Climatic snow line in the Swiss Alps.]CrossRefGoogle Scholar
Fletcher, J. O. Vliyaniye polyarnykh l’dov na klimat [The influence of polar ice on climate]. Izvestiya Akademii Nauk SSSR. Seriya Geograficheskaya, 1970, No. 1, p. 2436. [Survey of atmospheric processes a affected by presence of polar ice.]Google Scholar
Hoinkes, H. C Radiation budget at Little America V, 1957. (In [Union Géodésique. …]… International Symposium an Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 26384.) [Results of measurement of short-wave and long-wave radiation fluxes, March ig57-January 1958. Differences in results obtained during same period at Scott Base noted.]Google Scholar
Knight, C. A. Knight, N. C. The falling behavior of hailstones. Journal of the Atmospheric Sciences, Vol. 27, No. 4, 1970, p. 67281. [Examination of hailstone structure and symmetry implies mode of fall.]2.0.CO;2>CrossRefGoogle Scholar
Knight, C. À Knight, N. C. Hailstone embryos. Journal of the Atmospheric Sciences, Vol. 27, No. 4, 1970. p. 65966. [Description and discussion in terms of growth.]2.0.CO;2>CrossRefGoogle Scholar
Knight, C. A. Knight, N. C. Lobe structure of hailstones. Journal of the Atmospheric Sciences, Vol. 27, No. 4, 1970, p. 66771. [Range of lobe structures classified on basis of form and growth conditions.]2.0.CO;2>CrossRefGoogle Scholar
Koerner, R. M. Weather and ice observations of the British Trans-Arctic Expedition, 1968-9. Weather, Vol. 25, No. 5, 1970, p. 21828. [General account of weather conditions and glaciological observations recorded during expedition.]CrossRefGoogle Scholar
Kuhn, M. Ice crystals and solar halo displays, Plateau station, 1967. ([In [Union Géodésique. …]… Intertional Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970. p. 298303.) [Observations on production and structure of ice crystals and resultant halo phenomena.]Google Scholar
Levi, L., Crystal orientation in a wet growth hailstone, byLevi, L.,Achaval, E.,Aufdermaur, A.N Journal of the. Atmospheric Sciences, Vol. 27, No. 3, 1970, p. 51213. [Natural hailstone with c-axis distribution found in laboratory wind-tunnel experiments.]2.0.CO;2>CrossRefGoogle Scholar
Macklin, W. C., The analysis of a hailstone, by Macklin, W.C,Merlivat, L.,Stevenson, C.M Quarterly Journal of the Royal Meteorological Society, Vol. 96, No. 409, 1970, p. 47286. [Bubble and crystal structure and isotopic composition analysed and used to deduce trajectory.]CrossRefGoogle Scholar
Mossop, S. C. Concentrations of ice crystals in clouds. Bulletin of the American Meteorological Society, Vol. 51, No. 6, 1970, p. 47478. [Concentration of ice crystals in cumulus clouds and how they originate.]2.0.CO;2>CrossRefGoogle Scholar
Mossop, S. C, Ice particles in maritime clouds near Tasmania, by Mossop, S.C,Ono, A.,Wishart, E. R. Quarterly Journal of the. Royal Meteorological Society, Vol. 96, No. 409, 1970, p. 487508. [Study of conditions when ice particles were found and of their concentration.]CrossRefGoogle Scholar
Mulligan, J. C. Measurement of the thermal conductivity of frost by a transient hot-wire technique. Journal of Geophysical Research, Vol. 75, No. 21, 1970, p. 418083. [Transient method for measuring thermal conductivity of frost deposit.] CrossRefGoogle Scholar
Musil, D.J Computer modeling of hailstone growth in feeder clouds. Journal of the Atmospheric Sciences, Vol.27, No. 3, 1970, p. 47482. [Development of model to predict size and time of growth of hailstones.]2.0.CO;2>CrossRefGoogle Scholar
Ohtake, T. Unusual crystal in ice fog. Journal of Ike Atmospheric Sciences, Vol. 27, No. 3, 1970. p. 50911. [Study of crystal shapes, including 14- or 20-face potyhedra, in ice fogs.]2.0.CO;2>CrossRefGoogle Scholar
Ohtake, T. Suchanner, R.G Electric properties of ice fog crystals. Journal of Applied Meteorology, Vol. 9, No. 2, 1970, p. 28993. [Studies of natural and artificial ice fog crystals show they have no significant net charge.]2.0.CO;2>CrossRefGoogle Scholar
Ono, A. Growth mode of ice crystals in natural clouds. Journal of the Atmospheric Sciences, Vol. 27, No. 4, 1970, p. 64958, [Study of over 10 000 replicas shows relation of growth mode to temperature.]2.0.CO;2>CrossRefGoogle Scholar
Schuepp, P. H. Measurements of the effect of surface roughness on the convective heat and mass transfer of spherical hailstone models. Dissertation Abstracts, B, Vol. 29, No. 2, 1968, p. 717-B. [Abstract of Ph.D. thesis, University of Toronto, 1967. Microfilm copies obtainable from National Library of Canada, Ottawa.]Google Scholar
Schwerdtfeger, W. Mahrt, L. J. The relation between the Antarctic temperature inversion in the surface layer and its wind regime. (In [Union Géodésique… . |… International Symposium on Antarctic Glaciological Exploration (ISAGE),. , . 1968, 1970, p. 30815.) [Relationship between strength of temperature inversion in surface layer over sloped ice fields and wind regime at surface itself.]Google Scholar
Steffe, D. H. A note on the control of contamination in hail samples collected for trace metal analysis. Journal of Applied Meteorology, Vol. 9, No. 1, 1970, p. 19394. [Extent to which washing an ice specimen with water removes contamination left by contact e.g. with the ground.]2.0.CO;2>CrossRefGoogle Scholar
Weinstein, A. I. Ttakeuchi, D. M. Observations of ice crystals in a cumulus cloud seeded by vertical-fall pyrotechnics. Journal of Applied Meteorology, Vol. 9, No. 2, 1970, p. 26568. [Number of ice crystals in cloud exceeded number of ice nuclei by three orders of magnitude.]2.0.CO;2>CrossRefGoogle Scholar

Snow

Averyanov, V. G. K voprosu o velichine nakopleniya snega v tsentral’noy Antarktide [The problem of the magnitude of snow accumulation in central Antarctica]. Informatsionnyy Byulleten’ Sovetskoy Antarkticheskoy Ekspeditsii, No. 73, 1969, p. 59.Google Scholar
Clark, R. Snowdrift patterns on vertical surfaces. Weather, Vol. 25, No. 5, 1970, p. 21011. [Observations on how air passes through and round groups of towers, illustrated by patterns of windscoops round oil storage tanks on Deceplion Island, South Shetland Islands.]CrossRefGoogle Scholar
Dyer, R. M. Persistence in snowfall intensities measured at the ground. Journal of Applied Meteorology, Vol. 9, No. 1, 1970, p. 2934. [Eight-scattering measurements used to determine variations of intensity during a snow-storm.]2.0.CO;2>CrossRefGoogle Scholar
Fojt, W. Daten zur Höhe der Schneedecke im Erzgebirgsraum. Acta Hydrophysica, Bd. 13, Ht. 2, 1968, p. 91100. [Mean value of snow cover thickness on Erzgebirge based on 25 years of data.]Google Scholar
FrÖhlich, W. Die n-Jährlichkeit grösster winterlicher Schneehöhen in der Steiermark. Wetter und Leben, Jahrg. 22, Ht, 5–6, 1970, p. 10506. [Maximum snow height in winter in Steiermark. Austria, measured over period 1 to 100 years. Average reached every 2 or 3 years.]Google Scholar
Gardner, J. Geomorphic significance of avalanches in the Lake Louise area, Alberta, Canada. Arctic and Alpine Research, Vol. 2, No. 2, 1970, p. 13544. [Study of avalanche frequency and of effectiveness as geomorphic agent.]CrossRefGoogle Scholar
Gensler, G. A. Typische Schnee- und Witterungsverhältnisse im Winter in den Alpen. Les Alpes. Revue du Club Alpin Suisse, 44e An., 4e Trimestre, 1968, p. 23542. [Relationship between Alpine snow line and winter weather.]Google Scholar
Green, F. H W. Seasonal changes of snow cover on the Cairngorms. Weather, Vol. 25, No. 5, 1970, p. 21113. [Illustrated by series of photographs, 1962 and 1963.]CrossRefGoogle Scholar
Jail, M. Note sur l’hiver remarquable 1969-1970 dans les Alpes françaises. Revue de Géographie Alpine, Tom. 58, Fasc. 3, 1970, p. 50513. [Report of exceptionally severe winter and its consequences including many avalanches.]CrossRefGoogle Scholar
Keeler, C. M. Snow accumulation on Mount Logan, Yukon Territory, Canada. Water Resources Research, Vol. 5, No. 3, 1969, p. 71923. [Describes measurements of snow accumulation made on high mountain and relates them to regional trends in precipitation.]CrossRefGoogle Scholar
Lachapelle, E. R. From snowflake to avalanche. Natural History, Vol. 79, No. 2, 1970, p. 3039.Google Scholar
Langmuir, E. Snow profiles in Scotland. Weather, Vol. 25, No. 5, 1970, p. 20309. [Summarizes observations of snow cover, winters 1967-68 and 1968-69, Cairngorm Mountains. Structure of snow cover correlated to recent weather history.]CrossRefGoogle Scholar
Lauscher, F. Zur klimatischen Abschätzung extremer Schneehöhen österreichischer Orte. Wetter und Leben, Jahrg. 22, Ht. 5–6, 1970, p. 10205. [Discusses snow depth in Austria, 1901-60.]Google Scholar
Mckay, C. A. Thompson, H. A. Estimating the hazard of ice accretion in Canada from climatological data. Journal of Applied Meteorology, Vol. 8, No. 6, 1969, p. 92735. [Distribution of freezing precipitation estimated from standard climatological data.]2.0.CO;2>CrossRefGoogle Scholar
Megahan, W. F. Increasing snowmelt rate by surface additives. Dissertation Abstracts, B, Vol. 29, No. 5, 1968. p. 1743-B44-B. [Study of effect of different materials. Abstract of Ph.D. thesis, Colorado State University, 1968. University Microfilms order no. 68- 14941.]Google Scholar
Megahan, W. F., The effect of albedo-reducing materials on net radiation at a snow surface, [by] Megahan, W.F,Meiman, J.R,Goodell, B.C Bulletin de l’Association Internationale d’Hydrologie Scientifique, 15e An., No. 1, 1970, p. 6980. [Field measurements of net radiation.]CrossRefGoogle Scholar
Neethling, D. C. Snow accumulation on the Fimbul Ice Shelf, western Dronning Maud Land, Antarctica. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 390404.) [Studies at and around "Sanae" base, 1962-66.]Google Scholar
Ohtake, T. Observations of size distributions of hydrometeors through the melting layer. Journal of the Atmospheric Sciences, Vol. 26, No. 3, 1969, p. 54557. [Simultaneous observations of size distributions of snow-flakes and raindrops at different stations along slopes of Mount Zao, Japan, and Douglas Island, Alaska.]2.0.CO;2>CrossRefGoogle Scholar
Ouha, H. Kobayashi, D. A study on drifting snow. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 30308.) [Photographic study of behaviour of snow particles in investigation of relation between temperature and threshold wind speed in snow drifting.]Google Scholar
Pershagen, H. Snötäcket i Sverige 1931-60. Meddelanden från Sveriges Meteorologiska och Hydrologiska Institut, Ser. A, No. 5, 1969, 54 p. [Snow cover in Sweden 1931-60. Material collected from 412 stations. English summary.]Google Scholar
Pinchak, A. C. Snow avalanche activity, upper Kahiltna Glacier. American Alpine Journal, Vol. 16, No. 2, 1969, p. 35864. [Observations made during 1968 Smith-Nash Mount McKinley Expedition.]Google Scholar
Scott, W. D. Levin, Z. The effect of potential gradient on the charge separation during interactions of snow crystals with an ice sphere. Journal of the Atmospheric Sciences, Vol. 27, No. 3, 1970, p. 46373. [Experimental study and comparison with theory.]2.0.CO;2>CrossRefGoogle Scholar
Sekhon, R. S. Srivastava, R. C. Snow size spectra and radar reflectivity. Journal of the Atmospheric Sciences, Vol. 27, No. 2, 1970, p. 299307. [Use of published data to deduce equations for size distribution of snow-flakes.]2.0.CO;2>CrossRefGoogle Scholar
Shen, H. W. Roper, A. P. Dynamics of snow avalanche (with estimation for force on a bridge). Bulletin de l’Association internationale d’Hydrologie Scientifique, 15e An., No, 1, 1970, p. 726. [Description of avalanches and theory of their dynamics.]CrossRefGoogle Scholar
Shimizu, H. Air permeability of deposited snow. Contributions from the Institute of Low Temperature Science (Sapporo), Ser. A, No. 22, 1970, 32 p. [Describes methods and discusses results of measuring air permeability of various kinds of natural deposited snow to obtain relationship between air permeability, grain size and porosity.]Google Scholar
Shreve, R. L. Leakage and fluidization in air-layer lubricated avalanches. Geological Society of America. Bulletin, Vol. 79, No. 5, 1968, p. 65358. [Theory of avalanche flow.]CrossRefGoogle Scholar
Slaughter, C. W. Snow evaporation retardation by monolayers. Dissertation Abstracts, B, Vol. 29, No. 5, 1968, p. 1744-B. [Technically feasible process for reducing evaporation. Abstract of thesis, Colorado State University, 1968. University Microfilms order no. 68-14948.]Google Scholar
Smith, M. F, Winter precipitation over East Anglia. Meteorological Magazine, Vol. 99, No. 1170, 1970, p. 2027. [Discusses criteria for deciding whether precipitation will be rain, sleet or snow.]Google Scholar
Spink, P. C. Scottish snowbeds in summer 1969. Weather, Vol. 25, No. 5, 1970, p. 20102. [Continues annual survey. Warm summer and autumn caused disappearance of all snow.]CrossRefGoogle Scholar
Tomlinson, A. I. The Canterbury snowfall of November, 1967. New Zealand Geographer, Vol. 26, No. 1, 1970, p. 2036. [Meteorological reasons for this heavy snowfall and comparison with other New Zealand cases.]CrossRefGoogle Scholar
U.S. Dept. of Agriculture, Forest Service.Snow avalanches: a handbook of forecasting and control measures. Juneau, Alaska, U.S. Dept. of Agriculture. Forest Service, 1968. 84 p. (Agriculture Handbook No. 194.) [Comprehensive handbook dealing with all aspects of avalanche work (mainly in U.S.A.) including theory and causes, types, forecasting, countermeasures (e.g. artificial release), defences, and rescue.]Google Scholar
Weller, G. E. Schwerdtfeger, P. Thermal properties and heat transfer processes of the snow of the central Antarctic plateau. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration ISAGE),… 1968, 1970, p. 28498.) [Strong radiative and convective heat transfer processes shown to be present in snow at "Plateau" station, by both indirect and direct measurements.]Google Scholar
Wendler, G. The heat balance at the snow surface during the melting period (March, April 1966) near Fairbanks, Alaska. Gerlands Beiträge zur Geophysik, Bd. 76, Ht. 6, 1967, p. 45360. [Discusses method of calculation of heat balance for snow melt period, 30 March to 28 April 1966.]Google Scholar
Wishart, E. R. Electrification of Antarctic drifting snow. (In [Union Géodésique. …]… International Symposium on Antarctic Glaciological Exploration (ISAGE),… 1968, 1970, p. 31624.) [Direct measurement of charge carried by snow, together with wind speed and drifting snow mass concentration over range of heights above surface and at variety of air and snow surface temperatures at "Byrd" station.]Google Scholar
Yablokov, A. A. Snezhnyy pokrov doliny Chichkan [Snow cover of the Chichkan valley]. Izvestiya Vsesoyuznogo Geograficheskogo Obshchestva, Tom 102, No. 4, 1970, p. 38890. [Variation of snow cover depth with altitude and time of year in this part of U.S.S.R.]Google Scholar