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A method for estimating rain rate and drop size distribution from polarimetric radar measurements

机译:一种通过极化雷达测量估算降雨率和雨滴大小分布的方法

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Since the idea of differential reflectivity was first proposed the polarimetric radar technique has attracted great attention. Polarization radar measurements such as radar reflectivity (Z/sub HH/), differential reflectivity (Z/sub DR/) specific differential phase shift (K/sub DP/), and linear de-polarization ratio (LDR) have been successfully measured. These polarimetric measurements provide more information about precipitation and allow better characterization of hydrometeors. Z/sub DR/ and K/sub DP/ contain drop size information. Rain rate estimation from radar measurements is based on empirical models such as the Z-R relation, R(Z,Z/sub Dr/) and R(K/sub DP/). The empirical relations cannot give accurate results of estimation for various types of rain and drop size distribution (DSD). Accurate rain rate estimation requires detailed knowledge of rain DSD. In the past, rain DSD was commonly assumed to be an exponential distribution. Some observations, however, indicate that natural rain DSD contains fewer of both very large and very small drops than exponential distribution. The Gamma DSD with three parameters is capable of describing a broader variation in raindrop size distribution than an exponential distribution. The problem is how to retrieve the three parameters from limited radar measurements. The authors propose a method for retrieving DSD parameters and use them to calculate rain rate and the characteristic size.
机译:由于首先提出了差分反射率的想法,因此偏振雷达技术引起了极大的关注。已成功地测量偏振雷达测量,例如雷达反射率(z / sub hh /),差分反射率(z / sub dr /)特定差分相移(k / sub dp /)和线性解偏振比(LDR)。这些偏振测量提供了有关降水的更多信息,并允许更好地表征水流器。 z / sub dr /和k / sub dp / company丢弃尺寸信息。雷达测量的雨率估计基于诸如Z-R关系,R(Z,Z / Sub DR /)和R(k / sub dp /)的经验模型。实证关系不能为各种类型的雨水和跌落尺寸分布(DSD)提供准确的估计结果。准确的雨率估算需要详细了解雨DSD。在过去,雨DSD通常认为是指数分布。然而,一些观察结果表明,自然雨DSD含有比指数分布的非常大而且非常小的滴。具有三个参数的伽马DSD能够描述雨滴尺寸分布的更广泛的变化,而不是指数分布。问题是如何从有限的雷达测量中检索三个参数。作者提出了一种检索DSD参数的方法,并使用它们来计算雨率和特征尺寸。

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