Aagaard, K, Coachman, LK and Carmack, E (1981) On the halocline of the Arctic Ocean. Deep Sea Res. A, Oceanogr. Res. Pap., 28(6), 529–545 (doi: 10.1016/0198-0149(81)90115-1)
Almarcha, C and 6 others (2010) Active role of a color indicator in buoyancy-driven instabilities of chemical fronts. J. Phys. Chem. Lett., 1(4), 752–757 (doi: 10.1021/jz900418d)
Aussillous, P, Sederman, AJ, Gladden, LF, Huppert, HE and Worster, MG (2006) Magnetic resonance imaging of structure and convection in solidifying mushy layers. J. Fluid Mech., 552(4), 99 (doi: 10.1017/S0022112005008451)
Brabant, F (2012)
Physical and biogeochemical controls on the DMS/P/O cycle in Antarctic sea ice. (PhD thesis, Université libre de Bruxelles).
Chen, CF (1995) Experimental study of convection in a mushy layer during directional solidification. J. Fluid Mech., 293(6), 81 (doi: 10.1017/S0022112095001649)
Cottier, F, Eicken, H and Wadhams, P (1999) Linkages between salinity and brine channel distribution in young sea ice. J. Geophys. Res., 104, 15859–15871 (doi: 10.1029/1999JC900128)
Dalziel, SB, Hughes, GO and Sutherland, BR (2000) Whole-field density measurements by ‘synthetic schlieren’. Exp. Fluids, 28(4), 322–335 (doi: 10.1007/s003480050391)
Feltham, DL, Untersteiner, N, Wettlaufer, JS and Worster, MG (2006) Sea ice is a mushy layer. Geophys. Res. Lett., 33(14), L14501 (doi: 10.1029/2006GL026290)
Galley, RJ and 6 others (2015) Imaged brine inclusions in young sea ice – Shape, distribution and formation timing. Cold Reg. Sci. Technol., 111, 39–48 (doi: 10.1016/j.coldregions.2014.12.011)
Gill, AE (1973) Circulation and bottom water production in the Weddell Sea. Deep Sea Res. Oceanogr. Abstr., 20(2), 111–140 (doi: 10.1016/0011-7471(73)90048-X)
Hunke, EC, Notz, D, Turner, AK and Vancoppenolle, M (2011) The multiphase physics of sea ice: a review for model developers. Cryosphere, 5, 989–1009 (doi: 10.5194/tc-5-989-2011)
IPCC (2014) Climate change 2014: synthesis report. Contribution of Working Groups I, II and III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Core Writing Team, Pachauri, R.K. and Meyer, L.A. (eds.)]. IPCC, Geneva, Switzerland http://www.ipcc.ch/report/ar5/syr/
Jardon, FP and 5 others (2013) Full-depth desalination of warm sea ice. J. Geophys. Res. Oceans, 118(1), 435–447 (doi: 10.1029/2012JC007962)
Kuster, S and 7 others (2011) Differential diffusion effects on buoyancy-driven instabilities of acid–base fronts: the case of a color indicator. Phys. Chem. Chem. Phys., 13(38), 17295 (doi: 10.1039/c1cp21185d)
Lake, RA and Lewis, EL (1970) Salt rejection by sea ice during growth. J. Geophys. Res., 75(3), 583 (doi: 10.1029/JC075i003p00583)
Martin, S (1970) A hydrodynamic curiosity: the salt oscillator. Geophys. Fluid Dyn., 1(1–2), 143–160 (doi: 10.1080/03091927009365771)
Maslanik, J, Stroeve, J, Fowler, C and Emery, W (2011) Distribution and trends in Arctic sea ice age through spring 2011. Geophys. Res. Lett., 38(13), L13502 (doi: 10.1029/2011GL047735)
Morison, J, McPhee, M, Muench, R and The LeadEx Group (1993) The LeadEx experiment. Eos, Trans. Am. Geophys. Union, 74(35), 393 (doi: 10.1029/93EO00341)
Niedrauer, TM and Martin, S (1979) An experimental study of brine drainage and convection in young sea ice. J. Geophys. Res., 84(C3), 1176 (doi: 10.1029/JC084iC03p01176)
Nishimura, T, Sasaki, J and Htoo, TT (2003) The structure of plumes generated in the unidirectional solidification process for a binary system. Int. J. Heat Mass Transf., 46(23), 4489–4497 (doi: 10.1016/S0017-9310(03)00276-X)
Notz, D and Worster, MG (2008) In situ measurements of the evolution of young sea ice. J. Geophys. Res., 113(C3), C03001 (doi: 10.1029/2007JC004333)
Notz, D and Worster, MG (2009) Desalination processes of sea ice revisited. J. Geophys. Res. Ocean., 114(5), C05006 (doi: 10.1029/2008JC004885)
Notz, D, Wettlaufer, JS and Worster, MG (2005) A non-destructive method for measuring the salinity and solid fraction of growing sea ice in situ. J. Glaciol., 51(172), 159–166 (doi: 10.3189/172756505781829548)
Ohshima, KI and 12 others (2013) Antarctic Bottom Water production by intense sea-ice formation in the Cape Darnley polynya. Nat. Geosci., 6(3), 235–240 (doi: 10.1038/ngeo1738)
Settles, GS (2001) Schlieren and Shadowgraph Techniques: Visualizing Phenomena in Transparent Media.
Springer-Verlag, Berlin/Heidelberg
Shevchenko, N, Boden, S, Gerbeth, G and Eckert, S (2013) Chimney formation in solidifying Ga-25wt pct in alloys under the influence of thermosolutal melt convection. Metall. Mater. Trans. A., 44(8), 3797–3808 (doi: 10.1007/s11661-013-1711-1)
Tait, S, Jahrling, K and Jaupart, C (1992) The planform of compositional convection and chimney formation in a mushy layer. Nature, 359, 406–408 (doi: 10.1038/359406a0)
Thomas, C, Lemaigre, L, Zalts, A, D'Onofrio, A and De Wit, A (2015) Experimental study of CO2 convective dissolution: the effect of color indicators. Int. J. Greenh. Gas Control, 42, 525–533 (doi: 10.1016/j.ijggc.2015.09.002)
Tison, J-L and Verbeke, V (2001) Chlorinity/salinity distribution patterns in experimental granular sea ice. Ann. Glaciol., 33, 13–20 (doi: 10.3189/172756401781818211)
Tison, J-L, Haas, C, Gowing, MM, Sleewaegen, S and Bernard, A (2002) Tank study of physico-chemical controls on gas content and composition during growth of young sea ice. J. Glaciol., 48(161), 177–191 (doi: 10.3189/172756502781831377)
Vancoppenolle, M and 11 others (2013) Role of sea ice in global biogeochemical cycles: emerging views and challenges. Quat. Sci. Rev., 79, 207–230 (doi: 10.1016/j.quascirev.2013.04.011)
Wakatsuchi, M and Kawamura, T (1987) Formation processes of brine drainage channels in sea ice. J. Geophys. Res., 92(C7), 7195 (doi: 10.1029/JC092iC07p07195)
Wakatsuchi, M and Ono, N (1983) Measurements of salinity and volume of brine excluded from growing sea ice. J. Geophys. Res., 88(C5), 2943 (doi: 10.1029/JC088iC05p02943)
Weeks, WF (2010) On Sea-Ice.
University of Alaska Press, Fairbanks, Alaska, 144–190, 520–540
Weeks, WF and Ackley, SF (1986) The growth, structure and properties of sea ice. In Untersteiner, N (ed.) The Geophysics of Sea Ice.
Plenum Press, New York (NATO ASI B146), 9–164
Wells, AJ, Wettlaufer, JS and Orszag, SA (2011) Brine fluxes from growing sea ice. Geophys. Res. Lett., 38(4), L04501 (doi: 10.1029/2010GL046288)
Wettlaufer, JS, Worster, MG and Huppert, HE (1997) Natural convection during solidification of an alloy from above with application to the evolution of sea ice. J. Fluid Mech., 344, 291–316 (doi: 10.1017/S0022112097006022)
Worster, MG (1991) Natural convection in a mushy layer. J. Fluid Mech., 224, 335 (doi: 10.1017/S0022112091001787)
Worster, MG (1992) Instabilities of the liquid and mushy regions during solidification of alloys. J. Fluid Mech., 237(4), 649 (doi: 10.1017/S0022112092003562)
Worster, MG (1997) Convection in Mushy Layers. Annu. Rev. Fluid Mech., 29(1), 91–122 (doi: 10.1146/annurev.fluid.29.1.91)
Zhou, J and 9 others (2013) Physical and biogeochemical properties in landfast sea ice (Barrow, Alaska): insights on brine and gas dynamics across seasons. J. Geophys. Res. Oceans, 118(6), 3172–3189 (doi: 10.1002/jgrc.20232)