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Real-Time Water Vapor Maps from a GPS Surface Network: Construction, Validation, and Applications

机译:来自GPS地面网络的实时水汽图:构造,验证和应用

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In this paper the construction of real-time integrated water vapor (IWV) maps from a surface network of global positioning system (GPS) receivers is presented. The IWV maps are constructed using a two-dimensional variational technique with a persistence background that is 15 min old. The background error covariances are determined using a novel two-step method, which is based on the Hollingsworth-Lonnberg method. The quality of these maps is assessed by comparison with radiosonde observations and IWVmaps from a numerical weather prediction (NWP) model. The analyzed GPS IWV maps have no bias against radiosonde observations and a small bias against NWP analysis and forecasts up to 9 h. The standard deviation with radiosonde observations is around 2 kg m~(-2), and the standard deviation with NWP increases with increasing forecast length (from 2 kg m~(-2) for the NWP analysis to 4 kg m~(-2) for a forecast length of 48 h). To illustrate the additional value of these real-time products for nowcasting, three thunderstorm cases are discussed. The constructed GPS IWV maps are combined with data from the weather radar, a lightning detection network, and surface wind observations. All cases show that the location of developing thunderstorms can be identified 2 h prior to initiation in the convergence of moist air.
机译:本文介绍了从全球定位系统(GPS)接收器的地面网络构建实时综合水汽(IWV)地图的方法。 IWV地图是使用二维变分技术构建的,其持久背景为15分钟。使用基于Hollingsworth-Lonnberg方法的新型两步法确定背景误差协方差。这些地图的质量通过与无线电探空仪观测值和来自数值天气预报(NWP)模型的IWV地图进行比较来评估。所分析的GPS IWV地图对探空仪的观测没有偏见,对NWP分析和预报的偏倚也很小,长达9小时。探空仪观测值的标准偏差约为2 kg m〜(-2),而NWP的标准偏差则随着预报长度的增加而增加(从NWP分析的2 kg m〜(-2)到4 kg m〜(-2) ),预计时长为48小时)。为了说明这些实时产品对临近预报的附加价值,讨论了三个雷暴案例。构造的GPS IWV地图与来自天气雷达,雷电检测网络和地面风观测的数据结合在一起。所有案例都表明,在潮湿的空气汇聚开始前2小时,就可以确定正在发展的雷暴的位置。

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