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Development of a Single-Moment Cloud Microphysics Scheme with Prognostic Hail for the Weather Research and Forecasting (WRF) Model

机译:具有预后冰雹的单机云微体综合作用(WRF)模型的开发

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This study examines the effect of hail on microphysical processes and precipitation. The Weather Research and Forecasting (WRF) Single-Moment 7-class Microphysics (WSM7) is developed by introducing the hail hydrometeor as an additional prognostic water substance within the WSM6 scheme, which are four-ice and three-ice schemes, respectively. In an idealized 2D squall case, the WSM7 scheme with hail tends to enhance the accretion rate of ice particles due to the faster sedimentation of hail than that of graupel in the WSM6 scheme. The amount of hail is largely compensated with the reduction of graupel, but its maximum at lower altitudes. Weakened accretion of graupel by snow at higher altitudes maintains the snow aloft, and increases of it at the mid-level. The reduced sum of graupel and hail at the melting level leads to a decrease in the mixing ratio of rain in the WSM7 experiment, which is compensated by falling hail. In 3D squall line experiments, the WSM7 scheme tends to enhance convective activities in the leading edge of the squall line, whereas the precipitation intensity in the trailing stratiform region decreases. This is due to the fact that the addition of hail plays a role in suppressing light precipitation and increasing heavy precipitation activities.
机译:本研究审查了冰雹对微药物过程和降水的影响。天气研究和预测(WRF)单机7级微妙物(WSM7)是通过将冰雹水流量作为WSM6方案中的另一种预后水物质而开发,分别是四冰和三层冰方案。在理想化的2D分断情况下,由于冰雹在WSM6方案中的Graupel的沉降更快,WSM7方案倾向于增强冰颗粒的增强速率。冰雹的数量随着Graupel的还原而大部分补偿,但其最大值在较低的海拔地区。在较高的海拔地区,雪的雪削弱了Graupel的吸收保持雪高电平,并在中间层次增加它。 Graupel和熔融水平的冰雹的总和导致WSM7实验中的雨量的混合比率降低,这通过落下冰雹来补偿。在3D分支线路实验中,WSM7方案倾向于增强分支线的前缘中的对流活动,而尾部层状区域中的沉淀强度降低。这是由于冰雹的添加在抑制光沉淀和增加重度降水活动方面发挥作用。

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