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A new one-dimensional radiative equilibrium model for investigating atmospheric radiation entropy flux

机译:研究大气辐射熵通量的一维辐射平衡新模型

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摘要

A new one-dimensional radiative equilibrium model is built to analytically evaluate the vertical profile of the Earth's atmospheric radiation entropy flux under the assumption that atmospheric longwave radiation emission behaves as a greybody and shortwave radiation as a diluted blackbody. Results show that both the atmospheric shortwave and net longwave radiation entropy fluxes increase with altitude, and the latter is about one order in magnitude greater than the former. The vertical profile of the atmospheric net radiation entropy flux follows approximately that of the atmospheric net longwave radiation entropy flux. Sensitivity study further reveals that a ‘darker’ atmosphere with a larger overall atmospheric longwave optical depth exhibits a smaller net radiation entropy flux at all altitudes, suggesting an intrinsic connection between the atmospheric net radiation entropy flux and the overall atmospheric longwave optical depth. These results indicate that the overall strength of the atmospheric irreversible processes at all altitudes as determined by the corresponding atmospheric net entropy flux is closely related to the amount of greenhouse gases in the atmosphere.
机译:建立一个新的一维辐射平衡模型,以假定大气长波辐射发射为灰体,短波辐射为稀释黑体为前提,分析评估地球大气辐射熵通量的垂直分布。结果表明,大气短波和净长波辐射熵通量均随高度增加,后者比前者大一个数量级。大气净辐射熵通量的垂直分布大致遵循大气净长波辐射熵通量的垂直分布。敏感性研究还表明,大气中长波光学深度较大的“较暗”大气层在所有高度上的净辐射熵通量均较小,这表明大气净辐射熵通量与大气长波光学深度之间存在内在联系。这些结果表明,由相应的大气净熵通量确定的所有海拔高度的大气不可逆过程的总体强度与大气中温室气体的数量密切相关。

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