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Direct weakening of tropical circulations from masked CO2 radiative forcing

机译:隐藏的CO2辐射强迫直接减弱了热带环流

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摘要

Climate models robustly simulate weakened mean circulations of the tropical atmosphere in direct response to increased carbon dioxide (CO2). The direct response to CO2, defined by the response to radiative forcing in the absence of changes in sea surface temperature, affects tropical precipitation and tropical cyclone genesis, and these changes have been tied to the weakening of the mean tropical circulation. The mechanism underlying this direct CO2-forced circulation change has not been elucidated. Here, I demonstrate that this circulation weakening results from spatial structure in CO2’s radiative forcing. In regions of ascending circulation, such as the intertropical convergence zone, the CO2 radiative forcing is reduced, or “masked,” by deep-convective clouds and high humidity; in subsiding regions, such as the subtropics, the CO2 radiative forcing is larger because the atmosphere is drier and deep-convective clouds are infrequent. The spatial structure of the radiative forcing reduces the need for the atmosphere to transport energy. This, in turn, weakens the mass overturning of the tropical circulation. The previously unidentified mechanism is demonstrated in a hierarchy of atmospheric general circulation model simulations with altered radiative transfer to suppress the cloud masking of the radiative forcing. The mechanism depends on the climatological distribution of clouds and humidity, rather than uncertain changes in these quantities. Masked radiative forcing thereby offers an explanation for the robustness of the direct circulation weakening under increased CO2.
机译:气候模型可以直接模拟增加的二氧化碳(CO2),直接模拟热带大气的平均环流减弱。对CO2的直接响应(定义为在没有海面温度变化的情况下对辐射强迫的响应)会影响热带降水和热带气旋的发生,而这些变化与平均热带环流的减弱有关。这种直接的二氧化碳强迫循环变化的机理尚未阐明。在这里,我证明了这种循环减弱是由于二氧化碳辐射强迫的空间结构造成的。在上升的环流区域,例如热带辐合带,由于对流云和高湿度,CO2的辐射强迫被减少或“掩盖”。在诸如亚热带这样的下陷区域中,CO2的辐射强迫较大,因为大气较干燥且深对流云很少。辐射强迫的空间结构减少了对大气传输能量的需求。反过来,这削弱了热带环流的大规模翻转。在大气总环流模型模拟的层次结构中,通过改变辐射传递来抑制辐射强迫的云层掩盖,可以证明以前未知的机制。其机理取决于云层和湿度的气候分布,而不是这些数量的不确定变化。因此,屏蔽辐射强迫为增加CO2时直接循环减弱的鲁棒性提供了解释。

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