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- W110772783 abstract "Since the seminal work of Lorenz, chaotic behaviour of truncated atmospheric equations bears conceptual grounds in the issue of weather predictability. As for climatic scales, low-order models of the El Nino–Southern Oscillation system show chaotic motions as well. The gap to General Circulation Models (GCMs) has been bridged in conceptual studies using a coarse spatial resolution—but temporally and physically resolved—tropospheric GCM. Cross sections of its attractor set across the boreal summer hint at an inverse period doubling route (‘out of chaos’) in the active-break cycle of the global monsoon system. These dynamics, best visible in integrals of motion, represent a distinct sub-regime of the seasonal cycle, borne in topological changes between spring and autumn bifurcations. Computational problems of first-generation simulations notwithstanding, the paper summarizes the GCM’s ‘geometry of behaviour’ and its observational analogues. The concluding conceptual discussion updates a ‘monsoon hypothesis’ and addresses hints at the dynamical status and potential evolution of the climate system." @default.
- W110772783 created "2016-06-24" @default.
- W110772783 creator A5071676468 @default.
- W110772783 date "2013-01-01" @default.
- W110772783 modified "2023-09-25" @default.
- W110772783 title "A General Circulation Model en Route to Intraseasonal Monsoon Chaos" @default.
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- W110772783 doi "https://doi.org/10.1007/978-3-642-34017-8_3" @default.
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