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Original Articles

Analytical investigation of the atmospheric radiation limits in semigray atmospheres in radiative equilibrium

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Pages 328-337 | Received 08 Apr 2002, Accepted 25 Feb 2003, Published online: 15 Dec 2016

References

  • Abe, Y. and Matsui, T. 1988. Evolution of an impact-generated H20-0O2 atmosphere and formation of a hot proto-ocean on Earth. J. Atmos. Sci. 45, 3081–3101.
  • Bohren, C. F. and Albrecht, B. A. 1998. Atmospheric ther-modynamics. Oxford University Press, New York.
  • Caldeira, K. and Kasting, J. F. 1992. Susceptibility of the early Earth to irreversible glaciation caused by carbon dioxide clouds. Nature 359, 226–228.
  • Chandraselchar, S. 1960. Radiative transfer. Dover, New York.
  • Gierasch, P. and Goody, R. M. 1970. Models of the Venus clouds. J. Atmos. Sci. 27, 224–245.
  • Goody, R. M. and Yung, Y. L. 1989. Atmospheric radiation. Theoretical basis. 2nd edn., Oxford University Press, New York.
  • Gorshkov, V. G. and Malcarieva, A. M. 2002. Greenhouse effect dependence on atmospheric concentrations of green-house substances and the nature of climate stability on Earth. Atmos. Chem. Phys. Discuss. 2, 289–337.
  • Hartmann, D. L. 1994. Global physical climatology. Aca-demic Press, New York.
  • Henderson-Sellers, A. and Meadows A. J. 1976. The evolution of the surface temperature of Mars. Planet. Space Sci. 24, 41–44.
  • Houghton, J. T. 1986. The physics of atmospheres. 2nd edn., Cambridge University Press, New York.
  • Ide, K., Le Treut, H., Li, Z.-X. and Ghil, M. 2001. Atmospheric radiative equilibria. Partbimodal solutions foratmospheric optical properties. Climate Dynamics 18, 29–49.
  • Ingersoll, A. P. 1969. The runaway greenhouse: A history of water on Venus, J. Atmos. Sci. 26, 1191–1198.
  • Irvine, T. E and Liley, P. E. 1984. Steam and gas tables with computer equations. Academic Press, San Diego, California.
  • Kasting, J. F. 1988. Runaway and moist greenhouse atmospheres and the evolution of Earth and Venus. Icarus 74, 472–494.
  • Kasting, J. E, Pollack, J. B. and Ackerman, T. P. 1984. Re-sponse of Earth’s atmosphere to increases in solar flux and implications for loss of water from Venus. Icarus 57, 335–355.
  • Komabayasi, M. 1967. Discrete temperatures of a hypothetical planet with the atmosphere and the hydrosphere of one component-two phase system under constant solar radiation. J. Meteorol. Soc. Jpn. 45, 137–139.
  • Kondratyev, K. Y. A. 1969. Radiation in the atmosphere. Academic Press, New York.
  • Lindzen, R. S., Hou, A. Y. and Farrell, B. F. 1982. The role of convective model choice in calculating the climate impact of doubling CO2. J. Atmos. Sci. 39, 1189–1205.
  • Liou, K. N. 1992. Radiation and cloud processes in the at-mosphere. Oxford University Press, New York.
  • Lorenz, R. D., McKay, C. P. and Lunine, J. I. 1999. Analytic investigation of climate stability on Titan: sensitivity to volatile inventory. Planet. Space Sci. 47, 1503–1515.
  • Nakajima, S., Hayashi, Y-Y. and Abe, Y. 1992. A study on the “runaway greenhouse effect” with a one-dimensional radiative-convective equilibrium model. J. Atmos. Sci. 49, 2256–2266.
  • North, G. R., Cahalan, R. F. and Coakley, J. A. Jr. 1981. Energy balance climate models. Rev. Geophys. Space Phys. 19, 91–121.
  • Pierrehumbert, R. T. 1995. Thermostats, radiator fins, and the local runaway greenhouse. J. Atmos. Sci. 52, 1784–1806.
  • Pollack, J. B. 1971. A nongrey calculation of the runaway greenhouse: Implications for Venus’ past and present. Icarus 14, 295–306.
  • Press, W. H., Teukolsky, S. A., Vetterling, W. T. and Flannery, B. P. 1994. Numerical Recipes in Fortran. The art of scientific computing. 2nd edn., Cambridge University Press, New York.
  • Ramanathan, V. and Coakley, J. A. Jr. 1978. Climate modeling through radiative-convective models, Rev. Geophys. Space Phys. 16,465–489.
  • Sagan, C. 1972. Earth and Mars: Evolution of atmospheres and surface temperatures. Science 177, 52–56.
  • Stephens, G. L. and Greenwald, T. 1991. The Earth’s radiation budget and its relation to atmospheric hydrology. Part 1: Observations of the clear sky greenhouse effect. J. Geo-phys. Res. 96, 15311-15 324.
  • Visconti, G. 2001. Fundamentals of physics and chemistry of the atmosphere. Springer-Verlag, Berlin.
  • Weaver, C. P. and Ramanathan, V. 1995. Deductions from a simple climate model: Factors governing surface temperature and atmospheric thermal structure. J. Geophys. Res. 100, 11585–11591.