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A Comprehensive Analysis of a Heavy Precipitation Event in Chengdu Plain (China) Based on Ground-Based GPS

机译:基于地面GPS的成都平原地区一次强降水事件的综合分析

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This study utilized the ground-based GPS water vapor monitoring network in the Chengdu Plain (102.9°-104.9°E, 30.1°- 31.4°N), alongside radiosonde data and National Center for Environmental Prediction and National Center for Atmospheric Research (NCEP/NCAR) reanalysis data, to conduct a comprehensive analysis of a heavy precipitation event in this region in 2008. Correlations were found between the GPS precipitable water vapor (GPS-PWV) variations, the actual precipitation in the region, and the physical mechanism for the GPS-PWV variations. The research results indicate that the variation trends in precipitable water vapor had a significant correlation with actual precipitation. The precipitable water vapor increased and decreased significantly before and after the precipitation event, respectively. The residence time of precipitable water vapor at high levels was correlated with the duration of actual precipitation to some extent. The maximum value of the precipitation intensity lagged behind the precipitable water vapor peak, which brought forward precipitation to a certain degree. A strong ascending motion of the air was linked to increases in PWV, and the intensity of the ascending motion was strongly correlated with GPS-PWV. Different atmospheric thermodynamic conditions also had a notable effect on GPS-PWV variations.
机译:这项研究利用了成都平原(102.9°-104.9°E,30.1°-31.4°N)的地面GPS水汽监测网络,无线电探空仪数据以及国家环境预测中心和国家大气研究中心(NCEP / NCAR)的再分析数据,以对该地区2008年的一次强降水事件进行全面分析。发现了GPS可沉淀水汽(GPS-PWV)变化,该地区的实际降水以及该地区的物理机制之间的相关性。 GPS-PWV变化。研究结果表明,可降水量水汽的变化趋势与实际降水有显着的相关性。在沉淀事件发生之前和之后,可沉淀的水蒸气分别显着增加和减少。高浓度可沉淀水蒸气的停留时间与实际降水的持续时间在一定程度上相关。降水强度最大值滞后于可降水量的水汽峰,在一定程度上使降水提前。空气的强烈上升运动与PWV的增加有关,并且上升运动的强度与GPS-PWV密切相关。不同的大气热力学条件对GPS-PWV变化也有显着影响。

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