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Algorithm for Improved QPE over Complex Terrain Using Cloud-to-Ground Lightning Occurrences

机译:利用云到地雷的出现改进复杂地形上的QPE的算法

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Lightning and deep convective precipitation have long been studied as closely linked variables, the former being viewed as a proxy, or estimator, of the latter. However, to date, no single methodology or algorithm exists for estimating lightning-derived precipitation in a gridded form. This paper, the third in a series, details the specific algorithm where convective rainfall was estimated with cloud-to-ground lightning occurrences from the U.S. National Lightning Detection Network (NLDN), for the North American Monsoon region. Specifically, the authors present the methodology employed in their previous studies to get this estimation, noise test, spatial and temporal neighbors and the algorithm of the Kalman filter for dynamically derived precipitation from lightning.
机译:长期以来,雷电和深层对流降水一直被作为紧密联系的变量进行研究,前者被视为后者的代理或估算器。但是,到目前为止,还没有单一的方法或算法可以估算网格形式的雷电降雨。本文是系列文章中的第三篇,详细介绍了通过北美国家季风探测网络(NLDN)针对北美季风地区估算的对流降雨和对地闪电的具体算法。具体来说,作者介绍了他们先前研究中使用的方法,以获得该估计,噪声测试,空间和时间邻域,以及用于从闪电中动态得出降水的卡尔曼滤波器算法。

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