References

[Ber78]

A. Berger. Long-term variations of daily insolation and quaternary climatic changes. Journal of Atmospheric Science, 35(12):2362–2367, 1978.

[BL91]

A. Berger and M. F. Loutre. Insolation values for the climate of the last 10 million years. Quaternary Science Reviews, 10(4):297–317, 1991.

[Bol80]

David Bolton. The computation of equivalent potential temperature. Mon. Wea. Rev., 108:1046–1053, 1980.

[Bud69]

M. I. Budyko. The effect of solar radiation variations on the climate of the earth. Tellus, 21(5):611–619, 1969.

[CK92]

Ken Caldeira and James F. Kasting. Susceptibility of the early earth to irreversible glaciation caused by carbon dioxide clouds. Nature, 359:226–228, 1992.

[Fri07]

Dargan M. W. Frierson. The dynamics of idealized convection schemes and their effects on the zonally averaged tropical circulation. J. Atmos. Sci., 64:1959–1976, 2007. doi:10.1175/JAS3935.1.

[GW02]

A. R. Gregory and V. West. The sensitivity of a model's stratospheric tape recorder to the choice of advection scheme. Q. J. Roy. Met. Soc., 128:1827–1846, 2002. doi:10.1256/003590002320603430.

[LRJ+04]

J. Laskar, P. Robutel, F. Joutel, M. Gastineau, A. C. M. Correia, and B. Levrard. A long-term numerical solution for the insolation quantities of the earth. Astronomy & Astrophysics, 428:261–285, 2004.

[LLM95]

B.P. Leonard, A.P. Lock, and M.K. Macvean. The nirvana scheme applied to one-dimensional advection. International Journal of Numerical Methods for Heat & Fluid Flow, 5(4):341–377, 04 1995. URL: https://doi.org/10.1108/EUM0000000004120, arXiv:https://www.emerald.com/hff/article-pdf/5/4/341/505011/eum0000000004120.pdf, doi:10.1108/EUM0000000004120.

[MW67]

Syukuro Manabe and Richard T. Wetherald. Thermal equilibrium of the atmosphere with a given distribution of relative humidity. J. Atmos. Sci., 24(3):241–259, 1967. doi:10.1175/1520-0469(1967)024%3C0241:TEOTAW%3E2.0.CO;2.

[MHS05]

Kendal McGuffie and Ann Henderson-Sellers. A climate modelling primer. Wiley, Hoboken, NJ [u.a.], 3. ed. edition, 2005.

[MFO+81]

C. Miller, D. L. Filkin, A. J. Owens, J. M. Steed, and J. P. Jesson. A two-dimensional model of stratosphcric chemistry and transport. J. Geophys. Res. Oceans, 86(C12):12039–12065, 1981. doi:10.1029/JC086iC12p12039.

[Mol03]

Franco Molteni. Atmospheric simulations using a GCM with simplified physical parameterizations. I: model climatology and variability in multi-decadal experiments. Climate Dynamics, 20:175–191, 2003. doi:10.1007/s00382-002-0268-2.

[Pie10]

Raymond T. Pierrehumbert. Principles of Planetary Climate. Cambridge University Press, 2010.

[RY89]

R.R. Rogers and M.K. Yau. A Short Course in Cloud Physics. Volume 113 of International Series in Natural Philosophy. Pergamon, Tarrytown, New York, 3rd edition, 1989.

[Rom17]

David M. Romps. Exact expression for the lifting condensation level. J. Atmos. Sci., 74:3891–3900, 2017. doi:10.1175/JAS-D-17-0102.1.

[WBMR24]

Luke M. Western, Scott D. Bachman, Stephen A. Montzka, and Matt Rigby. Malta: a zonally averaged global atmospheric transport model for long-lived trace gases. J. Adv. Model. Earth Syst., 2024. doi:10.1029/2023MS003909.

[WB06]

Robert Wood and Christopher S. Bretherton. On the relationship between stratiform low cloud cover and lower-tropospheric stability. J. Climate, 19:6425–6432, 2006.