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Remote sensing of atmospheric water vapor variation from GPS measurements during a severe weather event

机译:在恶劣天气事件中通过GPS测量值遥感大气水蒸气变化

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The Global Positioning System (GPS) provides a relatively inexpensive method to remotely sense atmospheric water vapor in all weather conditions. In this study, we applied the GPS meteorology technique to monitor the precipitable water vapor (PWV) variation during a severe weather event (typhoon EWINIAR). The Korean weighted mean temperature equation (KWMTE), customized for the Korean Peninsula, was used to improve the accuracy of the GPS PWV estimation. The time series and the comparison with the images of MTSAT/CMAX and the GPS PWV contour maps indicated that the temporal change of GPS PWV was closely related to the progress of the typhoon. The correlation between the maximum GPS PWV and the maximum rainfall caused by the typhoon was also higher than that for the quiet weather period. Furthermore, the peak in the time series of GPS PWV was generally in good agreement with the time when the maximum rainfall was recorded. Our results therefore confirm that GPS meteorology is an efficient PWV sensing technique, capable of capturing the complex characteristics of water vapor distribution and its temporal variation during a period of severe weather events.
机译:全球定位系统(GPS)提供了一种相对便宜的方法,可以在所有天气条件下远程感知大气中的水蒸气。在这项研究中,我们应用了GPS气象技术来监测恶劣天气事件(台风EWINIAR)期间可沉淀的水蒸气(PWV)变化。为朝鲜半岛量身定制的朝鲜加权平均温度方程(KWMTE)用于提高GPS PWV估算的准确性。时间序列以及与MTSAT / CMAX和GPS PWV等高线图的比较表明,GPS PWV的时间变化与台风的进展密切相关。台风引起的最大GPS PWV与最大降雨量之间的相关性也高于安静天气期间的相关性。此外,GPS PWV的时间序列中的峰值通常与记录最大降雨量的时间高度吻合。因此,我们的结果证实了GPS气象学是一种有效的PWV传感技术,能够捕获在恶劣天气事件期间水汽分布的复杂特征及其时间变化。

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