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首页> 外文期刊>Boundary-layer Meteorology >Mesoscale Structure of Trade Wind Convection over Puerto Rico: Composite Observations and Numerical Simulation
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Mesoscale Structure of Trade Wind Convection over Puerto Rico: Composite Observations and Numerical Simulation

机译:波多黎各上风的对流中尺度结构:综合观测和数值模拟

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We examine the mesoscale structure of the atmospheric boundary layer (ABL), low-level circulation, and trade wind convection over the sub-tropical island of Puerto Rico in mid-summer. Shallow afternoon thunderstorms are frequently seen over the western plains of the island. Observational data include automatic weather station measurements, radiosonde profiles, infrared satellite images, and mesoscale reanalysis data with a focus on the summer of 2006. Satellite microwave radar data (TRMM and CloudSat) indicate that island clouds typically extend just above the -20pC level during afternoon hours with reflectivity values reaching 50 dBz. A singular value decomposition of 3-hourly high resolution satellite rainfall maps reveals an island mode. From this a composite is constructed for a group of ten cases. With a Froude number [almost equal to]1 the trade winds pass over the mountains and standing vortices and gravity waves are trapped in the meandering wake. The Weather and Research Forecasting (WRF) model at 1-km resolution with 51 vertical layers is used to simulate the short-lived thunderstorms for two cases: 27 June and 20 July 2006. The model correctly locates the convective cells that develop between 1400 and 1700 LST. The shallow afternoon thunderstorms are triggered by surface heat fluxes, confluent sea breezes and a mountain wake. Recommendations for enhanced observations are given.
机译:我们在仲夏考察了波多黎各亚热带岛屿上的大气边界层(ABL),低空环流和中风对流的中尺度结构。岛上西部平原经常出现午后的雷阵雨。观测数据包括自动气象站测量,无线电探空仪剖面图,红外卫星图像和中尺度再分析数据,重点是2006年夏季。卫星微波雷达数据(TRMM和CloudSat)表明,岛云通常在-20pC高度之上延伸。午后时间,反射率值达到50 dBz。 3小时高分辨率卫星降雨图的奇异值分解揭示了一个孤岛模式。据此,为一组十个案例构建了一个组合。 Froude数几乎等于1,商风越过山脉,直立的涡流和重力波被困在蜿蜒的尾波中。 1公里分辨率的天气和研究预测(WRF)模型具有51个垂直层,用于模拟两种情况下的短时雷暴:2006年6月27日和7月20日。该模型正确地定位了在1400和1700 LST。午后的浅雷雨是由地表热通量,汇合的海风和山后山脉引起的。给出了增强观测的建议。

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