Hostname: page-component-84b7d79bbc-x5cpj Total loading time: 0 Render date: 2024-07-29T18:14:12.288Z Has data issue: false hasContentIssue false

Twenty-Five Years More of Theoretical and Experimental Research in Fluid Mechanics

Published online by Cambridge University Press:  04 July 2016

Extract

In the spring of 1914, in view of the tenth anniversary of the Aerodynamic Institute at Koutchino, near Moscow, I published a booklet in which I gave a survey of the Institute's activities since its foundation and concluded it as follows: “The problem of aerodynamical flying is solved, but, after the conquest of air space, another conquest, more difficult and of higher import, is offered to the ambition of man— the conquest of interplanetary spaces. “The brilliant progress of science gives hope that, in a more or less distant future, this problem will be solved in its turn through the patient and co-ordinated efforts of searchers impassioned by the greatness of this idea.

“The brilliant progress of science gives hope that, in a more or less distant future, this problem will be solved in its turn through the patient and co-ordinated efforts of searchers impassioned by the greatness of this idea.

Type
Research Article
Copyright
Copyright © Royal Aeronautical Society 1962

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

1.Riabouchinsky, D. (1935). Thirty Years of Theoretical and Experimental Research in Fluid Mechanics. Journal of the Royal Aeronautical Society, Vol. XXXIX, No. 292, pp. 282 398; No. 293, pp. 274-444, 1935.Google Scholar
2.Riabouchinsky, D. (1917). L'Institute Aérodynamique de Koutchino, 1904-1914 (in Russian and French), I. N. Kouch- nereffKoutchino,1904-1914 & Co., Moscow, March 1917.Google Scholar
3.Ziolkovsky, K. E. (1903). Exploration of World Spaces by Reaction Apparatuses (in Russian), Moscow, 1903.Google Scholar
4. Rynine, Professor by reaction apparatuses N. (1935). “Technical Inheritance” (in Russian), Izvestia, No. 220 N.(1935).“Technical Inheritance “(5773), Moscow, 20th Sept. 1935.Google Scholar
5.Nature (1914) (Notes), London, 28th May 1914.Google Scholar
6.Smirnoff, I. (1917). Account of the Assembly at the Aero dynamic Institute of Koutchino, 27th April 1917. I. N. Kouch- nereff & Co., Moscow, 1917.Google Scholar
7. Letternereff & Co., of Ch. D. Walcott, Secretary, Smithsonian Institution, Washington, U.S.A., dated 30th April 1914.Google Scholar
8. Me'moire descriptif d£posd a Bruxelles a l'Appui d'une de- mande de brevet d'invention par le Dr. Andre1 Bing le 10 Juin 1911, pour “Appareil destine1 a permettre l'exploration des hautes regions1911,pour“Appareil destinede l'atmosphere, si rargfiee’ que soit cette atmosphere” (No. 236377).Google Scholar
9. Lettre du Ministére des Affaires Economiques, Service de 1 Proprété Industrielle et Commerciale du 13-6-1911 (No.108216), certifiant que le Brevet Beige de M. André Bing a été accords le 30 Juin 1911. II a été mis a la disposition J Public en la Salle de Lecture du Service Beige de la Propriét é Industrielle et Commerciale à la date du 10 Septembre 191!Google Scholar
10. A proposal of the use of multiple-charge rocket was mad by Robert H. Goddart, who obtained a U.S.A. patent entitle “Rocket Apparatus“; application filed 1st October 19139 patented 7th July 1914.Google Scholar
11 Goddart, R. H. (1919). “A Method of Reaching Extreff Altitudes.” Smithsonian Miscellaneous Collection, Vol. 7tJ No. 2.Google Scholar
12.Riabouchinsky, D. (1916). On the Reaction of Gaseous Jets(In Russian). Communicated to the Moscow Mathematical Society on 20th December 1916.Google Scholar
13.Bulletin de I'Institute Aérodynamique de Koutchino, fasc. V. pp. 61-76, Paris, March 1920.Google Scholar
14. Patent of the non-recoil gun of C. T. Cooke, delivered U.S.A.; 7th July 1921.Google Scholar
15.Revue Militaire Suisse, No. 4, April 1956, Lausanne, Switzer land, with a paper of Premier-Lieutenant M.-H. Montfort, entitled “Le Canon sans Recul.“Google Scholar
16.Revue Militaire Suisse, No. 9, September 1957, with a paper of Premier-Lieutenant M. H. Montfort, entitled “Historique du Canon sans Recul, de Riabouchinsky à Cooke.”Google Scholar
17.Reissner Anniversary Volume, Michigan, U.S.A., 1949.Google Scholar
18. Vorträge aus dem Gebiete der Hydro and Aerodynamik, herausgegeben von Th. v. Karm&n and T. Levi-Civita, lnns« bruck, 1922.Google Scholar
19.Riabouchinsky, D. (1924). Apercus The'oriques de Mécanique des Fluides, Bulletin Technique de I'Aeronautique, No. 17, April 1924.Google Scholar
19A.Roy, Maurice (1928). “Sur l'ASrodynamique des ailes Sus-tentatrices et des Hélices,” Paris 1928.Google Scholar
20. Ing. Fabric Melot, Patent No. 522163, Supply of a Reactive Propeller with Multiple Trumps.Google Scholar
21.Hartmann, J.. Le Journal de Physique et Le Radium. Vol. VII, No. 2, February 1936, pp. 4957.Google Scholar
22. The use of a small screw propeller on a more or less long arm to obtain the needful couple. Bulletin de I'Institut Aéro dynamique de Koutchino, fasc. III, pp. 54-56, Décembre 1909.Google Scholar
23.Hele Shaw, H. J. S., Trans. Just. Nav. Arch. t. 40, p. 21, 1898.Google Scholar
24.Boussinesq, J.C. R. de I'Academie des Sciences, t. 90, p. 511, 1881.Google Scholar
25.Stokes, Sir G. G., British Ass. Rep., p. 143, 1898; Papers t.v., p. 278.Google Scholar
26.Riabouchinsky, D. The Phenomenon of Striction of the Boundary Layer and Turbulence. Proceedings of the Seventh Intern. Congress for Applied Mechanics, London, September 1948, Vol. 2, PartI, pp. 97-111.Google Scholar
27.Taylor, Sir Geoffrey. Experiments with Rotating Fluids, Proceedings of the First Intern. Congress for Applied Mechanics, Delft, p. 93, 1924.Google Scholar
28.Riabouchinsky, D., Sur la résistance de frottemont des disques tournant dans un fluide et les équations intégrals appliqués à ce problème, C. R. Académie des Sciences, T223, pp. 899 901, 1951.Google Scholar
29.Rosseland, S.On the Theory of Rotating Stars, Astrophysics Norvegia, Vol. II, No. 3, p. 191, Oslo, 1936.Google Scholar
30.Rayleigh, Lord. On the Irregular Flight of a Tennis Ball, Mess, of Math., 1878.Google Scholar
31.Greenhill, Sir George. Note on Previous Paper, Mess, of Math., 1880.Google Scholar
32.Lamb, Sir Horace.Hydrodynamics, Sixth Edition, p. 80, 1932.Google Scholar
33.Basset, A. B.Treatise on Hydrodynamics, Vol. I, p. 218, 1888.Google Scholar
34.Riabouchinsky, D.Introduction à l'étude des groupes moto- propulseurs mettant au jeu les vitesses supersoniques. Publications Scientifiques et Techniques du Ministère de I'Air, No. 157, pp. 1921, Paris, 1939.Google Scholar
35.Santon, L.Publications Scientifiques et Techniques du Ministôre de VAir, No. 68, p. 145, Paris, 1935.Google Scholar
36.Libessart, P.Recherches et Inventions, No. 248, p. 145, Paris, 1935.Google Scholar
37.Riabouchinsky, D. Le rôle de la Mècanique des Fluids dans led développemont de la théorie des fonctions d'une variable complexe, C. R. Acadômie des Sciences, t. 222, pp. 426428, 1946.Google Scholar
38.Riabouchinsky, D.Condition d'existence des Solutions des équations régissant les mouvements presque lin&ires, non permanents, d'un fluide pasfait compressible, C. R. Académie des Sciences, t. 241, pp. 10121017, 17 Octobre 1955.Google Scholar