首页> 外文期刊>Quarterly Journal of the Royal Meteorological Society >Effects of vertical wind shear and cloud radiative processes on responses of rainfall to the large-scale forcing during pre-summer heavy rainfall over southern China
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Effects of vertical wind shear and cloud radiative processes on responses of rainfall to the large-scale forcing during pre-summer heavy rainfall over southern China

机译:中国南方夏季强降水过程中垂直风切变和云辐射过程对降雨对大尺度强迫响应的影响

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摘要

The pre-summer heavy rainfall over southern China during 3-8 June 2008 is simulated using a two-dimensional cloud-resolving model. The model is integrated with imposed zonally uniform vertical velocity, zonal wind, horizontal temperature and vapour advection from National Centers for Environmental Prediction (NCEP)/Global Data Assimilation System (GDAS) data. The effects of vertical wind shear and cloud radiative processes on the response of rainfall to large-scale forcing are analysed through the comparison of two sensitivity experiments with the control experiment. One sensitivity experiment excludes the large-scale vertical wind shear and the other excludes the cloud radiative effects. During the decay phase of convection, the increase in model domain-mean surface rain-rate resulting from the exclusion of vertical wind shear is associated with the slowdown in the decrease of perturbation kinetic energy due to the exclusion of barotropic conversion from mean kinetic energy to perturbation kineticenergy. The increase in domain-mean rain-rate from the exclusion of cloud radiative effects is related to the enhancement of condensation and associated latent heat as a result of strengthened radiative cooling. The increase in the domain-mean surface rain-rate is mainly associated with the increase of convective rainfall, which is in turn related to the local atmospheric change from moistening to drying. During the onset and mature phases of convection, the domain-mean surface rain-rates are generallyinsensitive to vertical wind shear and cloud radiative effects whereas convective and stratiform rain-rates are sensitive to vertical wind shear and cloud radiative effects. The decrease in convective rain-rate and the increase in stratiform rain-rate are primarily associated with the enhanced transport of hydrometeor concentration from convective regions to raining stratiform regions.
机译:使用二维云解析模型模拟了2008年6月3日至8日中国南部的盛夏暴雨。该模型与国家环境预测中心(NCEP)/全球数据同化系统(GDAS)数据所施加的区域均匀垂直速度,区域风,水平温度和蒸汽对流集成在一起。通过比较两个敏感性试验与对照试验,分析了垂直风切变和云辐射过程对降雨对大尺度强迫响应的影响。一个敏感度实验不包括大型垂直风切变,另一个敏感度实验不包括云辐射效应。在对流的衰减阶段,由于排除垂直风切变导致的模型域平均地表降雨率的增加与摄动动能下降的减慢有关,这是由于将正压转换从平均动能转换为摄动动能。排除云辐射效应导致的平均雨率的增加与由于辐射冷却增强而导致的凝结和相关潜热的增加有关。区域平均地表降雨率的增加主要与对流降雨的增加有关,而对流降雨又与从湿润到干燥的局部大气变化有关。在对流的开始和成熟阶段,区域平均表层降雨率通常对垂直风切变和云辐射效应不敏感,而对流和层状降雨率对垂直风切变和云辐射效应不敏感。对流降雨率的下降和层状降雨率的增加主要与水对流浓度从对流区到下雨层状区的运输增加有关。

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