Coordinated Variation of Precipitable Water Vapor and Rainfall during Typhoon

Qin Wang, Yibin Yao, Chen Liu, Chaoqian Xu
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Abstract

Global Navigation Satellite System-derived Precipitable Water Vapor (GNSS-PWV) has been applied in numerous meteorological researches due to its high accuracy and all-weather support. This paper explores the coordinated variation characteristics between the PWV and actual precipitation during typhoon "Chanthu." The PWV series, from ten stations of Shanghai Continuously Operating Reference Stations (SHCORS) during Sep. 10th to 14th, 2021, were retrieved by real-time Precise Point Positioning (PPP) technology. We also collected the rainfall records from eleven meteorological stations during the same period. The results show that PWV content was significantly correlated with precipitation, i.e., PWV initially surged before rainfall, then remained stable during rain, and finally fell back to the normal level after rain. Additionally, the spatial changes of PWV could also reveal the water vapor (WV) transport path during the typhoon. It suggests that real-time PWV has the potential capacity for extreme precipitation warnings. The above findings indicate that the CORS system can equip the rainfall warning module to expand its further service field in the future.
台风期间可降水量与降雨量的协调变化
全球导航卫星系统衍生可降水量(GNSS-PWV)以其高精度和全天候支持的特点,在众多气象研究中得到了广泛应用。本文探讨了台风“灿都”期间PWV与实际降水的协调变化特征。利用实时精确点定位(PPP)技术反演了2021年9月10日至14日上海连续运行参考站(SHCORS) 10个站点的PWV序列。我们亦收集了同期11个气象站的雨量记录。结果表明:PWV含量与降水呈显著相关,即PWV在降雨前先急剧上升,雨后趋于稳定,雨后又回落到正常水平;此外,PWV的空间变化还可以揭示台风过程中水汽的输送路径。这表明实时PWV具有预警极端降水的潜在能力。以上研究结果表明,CORS系统可以配备降雨预警模块,在未来进一步拓展其服务领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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