Antoine, C., 1888: Tensions des vapeurs: nouvelle relation entre les tensions et les températures. Les Comptes Rendus de l40#40 Acadèmie des Sciences, 211#211, 681 - 684
Colaprete, A., Haberle, R. M., Toon, O. B., 2003: Formation of convective carbon dioxide clouds near the south pole of Mars. Journal of Geophysical Research, 212#212, 5081, doi:10.1029/2003JE002053
Chapman, S., Cowling, T. G., 1970: The Mathematical theory of non-uniform gases. Cambridge University Press, 423 pp
Conrath, B. J., 1975: Thermal structure of the Martian atmosphere during the dissipation of the dust storm of 1971. Icarus, 213#213, 36 - 46
Cunningham, E., 1910: On the velocity of steady fall of spherical particles through fluid medium. Proceedings of the Royal Society of London, Series A, 214#214, 357 - 365
Davies, C. N., 1945: Definitive equations for the fluid resistance of spheres. The Proceedings of the Physical Society, 215#215, 259 - 270
Deardorff, J. W., 1972: Numerical investigation of neutral and unstable planetary boundary layers. Journal of the Atmospheric Sciences, 216#216, 91 - 115
Deardorff, J. W., 1975: The development of boundary-layer turbulence models for use in studying the severe storm environment. Proceeding of the SESAME meeting, Boulder, NOAA-ERL, 251 - 261
Gerber, H., 1991 : Supersaturation and droplet spectral evolution in fog. Journal of the Atmospheric Sciences, 217#217, 1651 - 1664
Glandorf, D. L., Colaprete, A., Tolbert, M. A., Toon, O. B., 2002: CO46#46 snow on Mars and early Earth : Experimental constraints. Icarus, 218#218, 66 - 72
Golden, T. C., Sircar, S., 1994: Gas adsorption on silicate. Journal of Colloid and Interface Science, 219#219, 182 - 188
Gooding, J. L., 1986: Martian dust particles as condensation cuclei -- A preliminary assessment of mineralogical factors. Icarus, 220#220, 56 - 74
Kessler, E., 1969: On the distribution and continuity of water substance in atmospheric circulation. Meteorological Monographs, 221#221, 1 - 84
Klemp, J. B., Wilhelmson, R. B., 1978: The simulation of three-dimensional convective storm dynamics. Journal of the Atmospheric Sciences, 222#222, 1070 - 1096
Louis, J. 1979: A parametric model of vertical eddy fluxes in the atmosphere. Bound.-Layer Meteor., 223#223, 187 - 202
MacDonald, A. E., Lee, J. L., Xie, Y., 2000: The use of quasi-nonhydrostatic models for mesoscale weather prediction. Journal of the Atmospheric Sciences, 215#215, 2493 - 2517
Määttänen, A., Vehkamäki, H., Lauri, A., Merikallio, S., Kauhanen, J., Savijärvi, H., Kulmala, M., 2005: Nucleation studies in the Martian atmosphere, Journal of Geophysical Research, 224#224, E02002, doi:10.1029/2004JE002308
Ockert-Bell, M. B., Bell, III, J. F., Pollack, J. B., McKay, C. P., Forget, F., 1997: Absorption and scattering properties of the martian dust in the solar wavelength. Journal of Geophysical Research, 225#225, 9039 - 9050
Odaka, M., Kitamori, T., Sugiyama, K., Nakajima, K., Takahashi, Y. O., Ishiwatari M., Hayashi, Y.-Y., 2005: A formulation of non-hydrostatic model for moist convection in the Martian atmosphere. Proceeding of the 38 th ISAS Lunar and Planetary Symposium, The InInstitute of Space and Astronautical Science., 173 - 175
Rossow, W. B., 1978: Cloud microphysics: Analysis of the clouds of Earth, Venus Mars, and Jupiter. Icarus, 226#226, 1 - 50
Soong, S-T., Ogura, Y., 1973: A comparison between axi-symmetric and slab-symmetric cumulus cloud models. Journal of the Atmospheric Sciences, 227#227, 879 - 893
Stokes, G. G., 1845: On the effect of internal friction on the motion of pendulum, Transactions of the Cambridge Philosophical Society, 228#228, part2, 8 - 14
Sutherland, W., 1893: The viscosity of gases and molecular force. Philosophical Magazine, S. 5, 226#226, 507 - 531
Sutton, J. L., C. B. Leovy, and J. E. Tillman, 1978: Diurnal variations of the Martian surface layer meteorological parameters during the first 45 sols at two Viking lander sites, J. Atmos. Sci., 222#222, 2346 - 2355
Tobie, G., Forget, F., Lott, F., 2003: Numerical simulation of winter polar wave clouds observed by Mars Global Surveyor Mars Orbiter Laser Altimeter. Icarus, 229#229, 33 - 49
小高 正嗣, 中島 健介, 石渡 正樹, 林 祥介, 2001:
2 次元非弾性系を用いた火星大気放射対流の数値計算,
ながれ, 230#230, ながれマルチメディア 2001,
http://www.nagare.or.jp/mm/2001/odaka/
化学工学会編, 1999: 化学工学便覧, 丸善, 1339 pp
北守 太一, 2006:
大気主成分の凝結を考慮した火星大気非静力学モデルの開発.
北海道大学大学院地球惑星科学専攻修士論文, 99 pp
http://www.gfd-dennou.org/arch/prepri/2006/hokudai/kitamo/paper/pub/main.pdf
国立天文台編, 2004: 理科年表, 丸善, 1015 pp
坪木 和久, 榊原 篤志, 2001:
CReSS ユーザーズガイド第 2 版. 253 pp
http://cf.tokyo.rist.or.jp/CReSS.top.html
水野 量, 2000: 雲と雨の気象学. 朝倉書店, 196 pp
山下 達也, 2009: 大気主成分の凝結を考慮した 2 次元湿潤対流 -- 火星大気中の CO46#46 氷雲を伴う対流に関する基礎的数値実験 -- . 北海道大学大学院宇宙理学専攻修士論文, 179 pp
Odaka Masatsugu 2012-05-11