北京-门头沟泥石流事件x波段双偏振雷达观测分析

Hui Wang, Xiaoran Zhuang, Q. Meng, Yichen Chen, J. Li, Fugui Zhang
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引用次数: 0

摘要

本研究探讨房山x波段双极化气象雷达在2017年6月18日下午门头沟泥石流事件中的适用性。结合周边复杂地形,利用质量控制的x波段双极化雷达数据,分析了泥石流爆炸点附近$10 \ × 10$ km区域雷达反射率的时空特征。结果表明,在常规自动气象站稀少的复杂地形地区,雷达可以有效地捕捉到强降雨事件的发生和发展过程。泥石流附近的强降水持续时间为1230 LST ~ 1600 LST,连续出现了两个强降水期。第二阶段,分析区最大反射率和平均反射率均达到最大值,并出现明显的v型间隙。进一步的降水定量估算分析表明,上游水体与强降水的相互作用是此次泥石流事件的重要原因。综上所述,x波段双极化雷达能够在常规观测不足的山区捕捉局地强降雨事件的发生和发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Observational Analysis of X-band Dual-Polarization Radar for Beijing-Mentougou Debris-Flow Event
This study investigated the applicability of Fangshan X-band dual-polarization weather radar in the Mentougou debris-flow event occurred in the afternoon of June 18, 2017. Combined with the surrounding complex topography, the spatiotemporal characteristics of radar reflectivity in a $10 \times 10$ km area near the debris-flow explosion point were analyzed with the quality-controlled X-band dual-polarization radar data. The result shows that the occurrence and development of the heavy rainfall event can be effectively captured by the radar in the complex terrain areas where conventional automatic weather stations are scarce. The heavy rainfall lasts from 1230 LST to 1600 LST in the vicinity of the debris-flow, in which two consecutive heavy precipitation periods are observed. During the second period, the maximum reflectivity and the average reflectivity in the analysis area both reach maxima, and a distinct V-shaped gap is observed. Further analysis of quantitative precipitation estimation reveals that the interaction between the upstream water and the strong precipitation is an important cause of this debris-flow event. In conclusion, the X-band dual-polarization radar is capable of capturing the occurrence and development of locally heavy rainfall event in the mountainous area where conventional observations are scare.
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