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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Signature of microphysics on spatial rainfall statistics
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Signature of microphysics on spatial rainfall statistics

机译:签名空间降水粒子物理学统计数据

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Previous studies have suggested that the statistical multiscale structure of rainfall can be parameterized in terms of thermodynamic descriptors of the storm environment, and such dependence has been successfully implemented in downscaling applications. In this paper we suggest that it is possible to adopt the raindrop terminal velocity as a physical parameter to explain to a large degree the statistical variability of convective rainfall over a range of scales. We examine this assertion by analysis of high-resolution simulations of an atmosphere in radiative-convective equilibrium performed using the Weather Research and Forecasting (WRF) model and prescribing different rain terminal velocity settings corresponding to small, slowly falling drops and large, quickly falling drops, respectively. The analysis has focused on the study of the dependence of some basic statistics of rainfall fields (probability distribution of convective rain cell areas, power spectra, and multiscale statistics of rainfall intensity) on the raindrop terminal velocity by using a well-documented and widely used atmospheric model. Possible applications of our results include downscaling of rainfall satellite measurements, conditional on limited microphysical information from dual-frequency spaceborne radars, and conversion of radar reflectivity to rain rate, conditional on drop size distribution inferred from the scaling parameters of the reflectivity fields.
机译:先前的研究已经暗示统计多尺度结构的降雨参数化的热力学描述符风暴的环境,等等已成功实现的依赖缩小规模应用。建议可以采用雨滴终端速度作为一个物理参数解释在很大程度上统计对流降水的变化范围的鳞片。高分辨率模拟的大气radiative-convective平衡执行使用天气研究和预测(WRF)模型和处方不同雨终端速度设置对应于小,缓慢滴下降和大,迅速下降,下降分别。研究一些基本统计数据的依赖降雨字段(概率分布对流雨细胞区域、功率谱和降雨强度的多尺度统计)通过使用一个雨滴终端速度证据确凿的和广泛使用的大气模型。包括降雨降尺度卫星测量,条件有限从双频微观物理学的信息星载雷达,雷达和转换反射率下雨,条件下降从比例大小分布推断反射率参数字段。

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