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Sensitivity of Cloud-Resolving Simulations of Warm-Season Convection to Cloud Microphysics Parameterizations

机译:暖季对流云解析模拟对云物理参数化的敏感性

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This paper investigates the effects of cloud microphysics parameterizations on simulations of warm-season precipitation at convection-permitting grid spacing. The objective is to assess the sensitivity of summertime convection predictions to the bulk microphysics parameterizations (BMPs) at fine-grid spac-ings applicable to the next generation of operational numerical weather prediction models. Four micro-physical parameterization schemes are compared: simple ice (Dudhia), four-class mixed phase (Reis-ner et al.), Goddard five-class mixed phase (Tao and Simpson), and five-class mixed phase with graupel (Reisner et al.). The experimentation involves a 7-day episode (3-9 July 2003) of U.S. midsummer convection under moderate large-scale forcing. Overall, the precipitation coherency manifested as eastward-moving organized convection in the lee of the Rockies is insensitive to the choice of the microphysics schemes, and the latent heating profiles are also largely comparable among the BMPs. The upper-level condensate and cloudiness, upper-level radiative cooling/heating, and rainfall spectrum are the most sensitive, whereas the domain-mean rainfall rate and areal coverage display moderate sensitivity. Overall, the three mixed-phase schemes outperform the simple ice scheme, but a general conclusion about the degree of sophistication in the microphysics treatment and the performance is not achievable.
机译:本文研究了在允许对流网格间距的条件下云微物理参数化对暖季降水模拟的影响。目的是评估适用于下一代运行数值天气预报模型的精细网格空间上夏季对流预报对整体微物理参数化(BMP)的敏感性。比较了四种微物理参数化方案:简单冰(Dudhia),四类混合相(Reis-ner等人),戈达德五类混合相(Tao和Simpson)以及五组带gra的​​混合相( Reisner等)。实验涉及在中等规模的强迫作用下,美国仲夏对流进行的7天(2003年7月3日至9日)。总体而言,在落基山脉背风处表现为向东移动的有组织对流的降水连贯性对微物理方案的选择不敏感,潜热曲线在BMP中也相当。高层凝结物和云量,高层辐射冷却/加热和降雨谱是最敏感的,而区域平均降雨率和面积覆盖显示出中等敏感性。总的来说,这三种混合相方案优于简单的冰方案,但无法获得有关微物理处理的复杂程度和性能的一般结论。

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