Development of a Cloud Convection Model for Jupiter's Atmosphere
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References
Klemp J. B. and Wilhelmson, R. B. (1978), The simulation of three-dimensional convective storm dynamics
,
J. Atmos. Sci.
, 35, 1070--1096.
Kessler, E. (1969), On the Distribution and Continuity of Water Substance in Atmospheric Circulation,
Meteor. Monogr.
, 32, 84.
Atreya, S. K. and Romani, P. N. (1985), Photochemistry and clouds of Jupiter, Saturn and Uranus, in
Recent Advances in Planetary Meteorology
, edited by G. E. Hunt, pp. 17--68,
Cambridge Univ. Press, London
.
Weidenschilling, S. J. and Lewis, J. S. (1973), Atmospheric and cloud structure of the Jovian planet
,
Icarus
, 20, 465--476.
Sugiyama, K., Odaka, M., Nakajima, K., Hayashi, Y.-Y., deepconv Development Group (2006), deepconv: two-dimensional non-hydrostatic model,
<URL:http://www.gfd-dennou.org/library/deepconv/index.htm.en>
,
GFD Dennou Club
.
Nakajima, K., Takehiro, S., Ishiwatari, M., and Hayashi, Y.-Y. (2000), Numerical modeling of Jupiter's moist convection layer
,
Geophys. Res. Lett.
, 27, 3129--3133.
Sugiyama,K., Odaka,M., Kuramoto,K., and Hayashi, Y.-Y. (2006), Static stability of the Jovian atmospheres estimated from moist adiabatic profiles
,
Geophys. Res. Lett.
, 33, L03201,doi:10.1029/2005GL024554
Saito, K., Ishida, J., Aranami, K., Hara, T., Segawa, T., Narita, M., Honda, Y., (2007), Nonhydrostatic Atmospheric Models and Operational Development at JMA
,
Journal of the Meteorological Society of Japan.
, 85B, 271--304.
Asplund, M., Grevesse, N., and A. J. Sauval (2005), The solar chemical composition
, in Cosmic Abundances as Records of Stellar Evolution and Nucleosynthesis in honor of David L. Lambert, ASP Conference Series, 336, edited by T. G. Barnes and F. N. Bash., pp. 25--38,
Astronomical Society of the Pacific, Scan Francisco
.
Sugiyama, K., Odaka, M., Kuramoto, K., Hayashi, Y.-Y., oboro Development Group (2001), oboro: An equiribrium cloud condensation model by using Gibbs free energy minimization method,
<URL:http://www.gfd-dennou.org/library/oboro/>
,
GFD Dennou Club
.
Arakawa, A. and Lamb, V.R. (1977), Computational design of the basic dynamical processes of the UCLA general circulation model. in
Methods in Computational Physics
, edited by Chang, J., vol. 17. pp. 173-265, Academic Press.
Lorentz, E.N. (1960), Energy and numerical weather prediction,
Tellus
, 12, 364--373.
Asselin, R. (1972), Frequency filter for time integrations
,
Mon. Wea. Rev.
, 100, 487--490.
Sromovsky, L. A., Collard, A. D., Fry, P. M., Orton, G. S., Lemmon, M. T., Tomasko, M. G., and Freedman, R. S. (1998), Galileo probe measurements of thermal and solar radiation fluxes in the Jovian atmosphere
,
J. Geophys. Res.
, 103, 22,929--22,978.
Yair, Y., Levin, Z., and Tzivion, S. (1995), Microphysical processes and dynamics of a Jovian thundercloud
,
Icarus
, 114, 278--299.
Skamarock, W. C. and Klemp, J. B. (1992), The stability of time-split numerical methods for the hydrostatic and the nonhydrostatic elastic equations
,
Mon. Wea. Rev.
, 120, 2109--2127.
Briggs, F.H. and Sackett, P.D. (1989), Radio observations of Saturn as a probe of its atmosphere and cloud structure
,
Icarus
, 80, 77--103.
GFD-Dennou Club DCL Development Group,
<URL:http://www.gfd-dennou.org/library/dcl>
,
GFD Dennou Club
.
Dennou Ruby Project,
<URL:http://ruby.gfd-dennou.org/>
,
GFD Dennou Club
.
Morikawa, Y., Odaka, M., Ishiwatari, M., Hayashi, Y.-Y., Gtool4 Devlopment Group (2005), gt4f90io Fortran90 netCDF I/O library with gtool4 conventions,
<URL:http://www.gfd-dennou.org/library/gtool4/index.htm.en>
,
GFD Dennou Club
.
Development of a Cloud Convection Model for Jupiter's Atmosphere
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