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Precipitation Uncertainty Due to Variations in Precipitation Particle Parameters within a Simple Microphysics Scheme

机译:在简单的微物理方案中,由于降水粒子参数变化而导致的降水不确定性

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This work reports on the sensitivity of accumulated precipitation to the microphysical parameterization in simulations of deep convective storms using a three-dimensional, nonhydrostatic cloud model with a simple liquid-ice microphysics scheme. Various intercept parameters from an assumed Marshall-Palmer exponential size distribution are tested along with two particle densities for the hail/graupel (qh) category. These variations allow testing of unique qh distributions that have been observed and documented in previous literature. Tests are conducted for a single thermodynamic profile and three idealized wind shear profiles. The amount of accumulated precipitation at the ground is very sensitive to the way the qh category is parameterized. Distributions characterized by larger intercepts and/or smaller particle density have a smaller mass-weighted mean terminal fall velocity and produce smaller qh mixing ratios spread over a larger area. For example, for a qh category weighted toward graupel, only a fourth as much precipitation accumulates on the ground over 2 h (and none is hail) compared to a qh category weighted toward large hail (with baseball-sized stones common). The inherent uncertainty within the qh distribution for this simple cloud-scale three-class ice microphysics scheme suggests limited usefulness in the forecasting of ground-accumulated precipitation and damaging hail.
机译:这项工作报告了使用简单的液冰微物理方案的三维非静水云模型在深对流风暴模拟中累积降水对微物理参数化的敏感性。测试了来自假定的Marshall-Palmer指数大小分布的各种截距参数,以及冰雹/格拉普(qh)类别的两个粒子密度。这些变化允许测试先前文献中已观察到并记录的独特qh分布。对单个热力学曲线和三个理想化的风切变曲线进行了测试。地面上的累积降水量对qh类别的参数化方式非常敏感。以较大的截距和/或较小的颗粒密度为特征的分布具有较小的质量加权平均末端下降速度,并在较大的面积上产生较小的qh混合比。例如,对于权重为graupel的qh类别,在2小时内在地面上仅积聚了四分之一的降水(没有冰雹),而权重为大雹的qh类别(常见的是棒球大小的石头)。这种简单的云级三级冰微物理方案在qh分布内固有的不确定性表明,在预测地面累积降水和破坏性冰雹方面,其实用性有限。

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