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首页> 外文期刊>Journal of hydrometeorology >Stabilization of the Atmospheric Boundary Layer and the Muted Global Hydrological Cycle Response to Global Warming
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Stabilization of the Atmospheric Boundary Layer and the Muted Global Hydrological Cycle Response to Global Warming

机译:大气边界层的稳定和全球变暖对全球变暖的响应

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摘要

Both the global precipitation and evaporation in global warming simulations increase at 1%-3% K-1, much smaller than the rate suggested from the Clausius-Clapeyron (C-C) relation (6%-6.5% K-1). However, the reduction of surface sensible heat flux over the global ocean (5.2% K-1) matches the difference between the fractional increase of evaporation and the C-C relation, implying that the fractional decrease of the Bowen ratio over the global ocean follows the C-C relation closely. The analysis suggests that the stabilization of the atmospheric boundary layer (ABL) in response to global warming is the main factor responsible for the simultaneous reduction of the surface sensible flux and the muted increase in the surface latent heat. Because the stabilization of the ABL causes the same amount of fractional change in both the sensible and latent heat fluxes, the fractional decrease of the Bowen ratio closely follows the C-C relation. The ABL stabilization mechanism for the muted increase in the global hydrological cycle in response to global warming is physically consistent with two other proposed mechanisms, namely, the atmospheric energy constraint and the reduction of convective mass flux.
机译:在全球变暖模拟中,全球降水和蒸发量都以1%-3%K-1的速度增加,这比克劳修斯-克拉珀龙(C-C)关系(6%-6.5%K-1)所建议的速度要小得多。然而,全球海洋表面显热通量的减少(5.2%K-1)与蒸发分数增加和CC关系之间的差异相吻合,这意味着全球海洋的Bowen比的分数减少遵循CC关系紧密。分析表明,响应全球变暖,大气边界层(ABL)的稳定化是导致表面显着通量的同时减少和表面潜热的无声增加的主要因素。由于ABL的稳定导致显热通量和潜热通量的分数变化量相同,因此,鲍文比的分数下降紧密地遵循C-C关系。用于响应全球变暖而使全球水文循环无声增加的ABL稳定机制在物理上与其他两个建议的机制一致,即大气能量约束和对流质量通量的减小。

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