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The robust dynamical contribution to precipitation extremes in idealized warming simulations across model resolutions

机译:跨模型分辨率的理想变暖模拟中对极端降水的强大动力贡献

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摘要

The impact of the circulation shift under climate warming on the distribution of precipitation extremes and the associated sensitivity to model resolution are investigated using Community Atmosphere Model Version 3.0 in an aquaplanet configuration. The response of the probability density function of the precipitation to a uniform sea surface temperature warming can be interpreted as superimposition of a dynamically induced poleward shift and a thermodynamically induced upward shift toward higher intensities, which give rise to manyfold increase in the frequency of the most extreme categories of the precipitation events at the poleward side of the midlatitude storm track. Coarser resolutions underestimate not only the intensity of the precipitation extremes but also the dynamical contribution to the increase of precipitation extremes. Meanwhile, the thermodynamic contribution to the intensification of the precipitation extremes is substantially less than expected from the Clausius-Clapeyron relation, implicative of significant change in the vertical structure of the precipitation processes.
机译:使用“社区大气模型3.0版”在水上飞机配置中,研究了气候变暖下的循环变化对极端降水分布的影响以及对模型分辨率的相关敏感性。降水的概率密度函数对均匀海表温度变暖的响应可以解释为动态引起的极移和热力学引起的向较高强度的上移的叠加,这导致最大频率的增加很多倍。中纬度风暴径极向侧的极端极端降水事件。较粗的分辨率不仅低估了极端降水的强度,而且低估了极端降水增加的动力。同时,对极端降水加剧的热力学贡献远小于克劳修斯-克拉佩隆关系所预期的结果,这意味着降水过程的垂直结构发生了显着变化。

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