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首页> 外文期刊>Monthly Weather Review >Diurnal Cycle of Shallow and Deep Convection for a Tropical Land and an Ocean Environment and Its Relationship to Synoptic Wind Regimes
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Diurnal Cycle of Shallow and Deep Convection for a Tropical Land and an Ocean Environment and Its Relationship to Synoptic Wind Regimes

机译:热带陆地和海洋环境浅层和深层对流的日循环及其与天气风向的关系

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The characteristics of shallow and deep convection during the Tropical Rainfall Measuring Mission/ Large-Scale Biosphere-Atmosphere Experiment in Amazonia (TRMM/LBA) and the Eastern Pacific Investigation of Climate Processes in the Coupled Ocean-Atmosphere System (EPIC) are evaluated in this study. Using high-quality radar data collected during these two tropical field experiments, the reflectivky profiles, rain rates, fraction of convective area, and fraction of rainfall volume in each region are examined. This study focuses on the diurnal cycle of shallow and deep convection for the identified wind regimes in both regions. The easterly phase in TRMM/LBA and the northerly wind regime in EPIC were associated with the strongest convection, indicated by larger rain rates, higher reflectivities, and deeper convective cores compared to the westerly phase in TRMM/LBA and the southerly regime in EPIC. The diurnal cycle results indicated that convection initiates in the morning and peaks in the afternoon during TRMM/LBA, whereas in the east Pacific the diurnal cycle of convection is very dependent on the wind regime. Deep convection in the northerly regime peaks around midnight, nearly 6 h before its southerly regime counterpart. Moreover, the northerly regime of EPIC was dominated by convective rainfall, whereas the southerly regime was dominated by stratiform rainfall. The diurnal variability was more pronounced during TRMM/LBA than in EPIC. Shallow convection was associated with 10% and 3% of precipitation during TRMM/LBA and EPIC, respectively.
机译:在此评估了亚马逊地区热带雨量测量任务/大型生物圈-大气实验(TRMM / LBA)和东太平洋海洋-大气耦合系统(EPIC)气候过程调查期间的浅对流和深对流特征。研究。使用在这两个热带野外实验期间收集的高质量雷达数据,检查了每个区域的反射剖面,降雨率,对流面积分数和降雨量分数。这项研究的重点是在两个地区确定的风况下浅对流和深对流的昼夜周期。与TRMM / LBA和EPIC中的西风期相比,TRMM / LBA中的东风相和EPIC中的北风状态与最强的对流有关,这表明降雨率更高,反射率更高,对流芯更深。日循环结果表明,对流在TRMM / LBA期间在早晨开始,并在下午达到高峰,而在东太平洋,对流的日循环非常依赖于风况。北部政权的深对流在午夜左右达到高峰,比南部政权的对流早了6小时。此外,EPIC的北部地区以对流降雨为主,而南部地区则以层状降雨为主。与EPIC相比,TRMM / LBA期间的日变化更为明显。在TRMM / LBA和EPIC期间,浅对流分别与10%和3%的降水有关。

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