Science · 1980 · 1.1K citations · 77 references
Milankovitch CycleEngineeringClimate ModelingAstronomical TheoryEarth ScienceClimate PhysicsHolocenePaleoenvironmental ChangePleistocene Ice AgesPleistoceneOrbital ForcingGeochronologyClimate ChangeMeteorologyOrbital VariationsCryospherePaleoclimatologyClimate SystemEarth's ClimateClimate DynamicsClimatologyClimate Modelling
According to the astronomical theory of climate, variations in the earth's orbit are the fundamental cause of the succession of Pleistocene ice ages. This article summarizes how the theory has evolved since the pioneer studies of James Croll and Milutin Milankovitch, reviews recent evidence that supports the theory, and argues that a major opportunity is at hand to investigate the physical mechanisms by which the climate system responds to orbital forcing. After a survey of the kinds of models that have been applied to this problem, a strategy is suggested for building simple, physically motivated models, and a time-dependent model is developed that simulates the history of planetary glaciation for the past 500,000 years. Ignoring anthropogenic and other possible sources of variation acting at frequencies higher than one cycle per 19,000 years, this model predicts that the long-term cooling trend which began some 6000 years ago will continue for the next 23,000 years.
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Variations in the Earth's Orbit: Pacemaker of the Ice Ages
James D Hays, John Imbrie, N. J. Shackleton · Science · 1976 · 3.7K citations
Nicholas J Shackleton, Neil D. Opdyke · Quaternary Research · 1973 · 2.5K citations
Cesare Emiliani · The Journal of Geology · 1955 · 1.6K citations
Stochastic climate models: Part I. Theory
Klaus Hasselmann · Tellus A Dynamic Meteorology and Oceanography · 1976 · 1.4K citations · Full text