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Responses of Subtropical Marine Stratocumulus Cloud to Perturbed Lower Atmospheres

机译:亚热带海洋平流积云对扰动下层大气的响应

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References(23) Cited-By(3) Supplementary materials(2) Most global climate models (GCMs) suffer from prediction biases in their dynamic and thermodynamic structures in and around the boundary layer (BL). It remains unclear which of these biases within the large-scale conditions are crucial to the accurate reproduction of BL clouds. To develop a better understanding of the effects of variations in the simulated large-scale conditions, this paper uses large-eddy simulations to evaluate the effects of the fluctuation based on the latest GCM ensemble data on the prediction of a Californian stratocumulus under perturbed environments. The result indicates the relative importance of each component, and the most important factors controlling cloud behavior are the amplitudes of jumps in vapor and temperature across a BL top. The given variations in wind velocity and its vertical shear, large-scale subsidence, and surface heat fluxes have a lesser effect. This suggests that to reduce model biases predicted in GCMs, greater attention should be paid to the stratification structure across the BL top.
机译:参考文献(23)被引用的文献(3)补充材料(2)大多数全球气候模型(GCM)在边界层(BL)内和周围的动态和热力学结构中都存在预测偏差。尚不清楚大规模条件下的哪些偏差对BL云的精确再现至关重要。为了更好地理解模拟的大规模条件下变化的影响,本文使用大涡模拟来评估波动,基于最新的GCM集成数据,预测在扰动环境下加利福尼亚平流层积。结果表明了每种成分的相对重要性,而控制云行为的最重要因素是BL顶部蒸气和温度跃变的幅度。给定的风速变化及其垂直切变,大范围沉降和表面热通量的影响较小。这表明,为减少在GCM中预测的模型偏差,应更加关注BL顶部的分层结构。

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