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A high-top version of IAP-AGCM:Preliminary assessment and sensitivity IAP-AGCM 被引量:2
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作者 Zhaoyang Chai Minghua Zhang +4 位作者 Qingcun Zeng He Zhang Jiangbo Jin Jinbo Xie Ting You 《Atmospheric and Oceanic Science Letters》 CSCD 2021年第2期35-41,共7页
Extending the atmospheric model top to high altitude is important for simulation of upper atmospheric phenomena,such as the stratospheric quasi-biennial oscillation.The high-top version of the Institute of Atmospheric... Extending the atmospheric model top to high altitude is important for simulation of upper atmospheric phenomena,such as the stratospheric quasi-biennial oscillation.The high-top version of the Institute of Atmospheric Physics Atmospheric General Circulation Model with 91 vertical layers(IAP-AGCML91)extends to the mesopause at about 0.01 hPa(~80 km).The high-top model with a fully resolved stratosphere is found to simulate a warmer stratosphere than the low-top version,except near the South Pole,thus reducing its overall cold bias in the stratosphere,and significantly in the upper stratosphere.This sensitivity is shown to be consistent with two separate mechanisms:larger shortwave heating and larger poleward stratospheric meridional eddy heat flux in the hightop model than in the low-top model.Results indicate a significant influence of vertical resolution and model top on climate simulations in IAP-AGCM. 展开更多
关键词 IAP-AGCM Middle atmosphere STRATOSPHERE Radiative heating Transient heat flux
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