Output consistency analysis of the polarimetric weather radar simulator through real weather events

E. Barcaroli, F. Cuccoli, S. Lischi, A. Lupidi, L. Facheris
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Abstract

POWERS is a polarimetric weather radar signal simulator developed by the RaSS (Radar and Surveillance System) Laboratory. This software allows to produce realistic weather radar measurements from a known meteorological scenario, generated by the WRF (Weather Research and Forecast) model. One of the problems encountered when developing complex simulators like POWERS, is to identify a number of methods through which one can assess their ability to generate realistic signals. In previous works we identified some of them. Here we discuss the general issue of the consistency of the simulator's outputs with respect to the original atmospheric scenario. Such analysis is based on a couple of real weather events: the first occurred in August 2015 in the Florence area and the second one in October 2012 over the Strait of Sicily. The analysis involves the precipitating liquid water provided by WRF and the reflectivity outputs gathered by POWERS when operating in the meteorological scenario defined by WRF itself. The objective of the analysis is to define the physical consistency between such scenario and the POWERS' reflectivity outputs by evaluating the errors made to retrieve the water content through the radar observables in both ideal and non-ideal conditions, and correlating the error spread to the variability of the microphysical parameters in the WRF scene.
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极化天气雷达模拟器真实天气事件输出一致性分析
POWERS是由雷达和监视系统实验室开发的偏振气象雷达信号模拟器。该软件允许根据WRF(天气研究与预报)模式生成的已知气象情景生成真实的天气雷达测量结果。在开发像POWERS这样的复杂模拟器时遇到的一个问题是,确定一些方法,通过这些方法可以评估它们产生真实信号的能力。在以前的工作中,我们确定了其中的一些。在这里,我们讨论了模拟器的输出与原始大气情景的一致性的一般问题。这样的分析是基于几个真实的天气事件:第一次发生在2015年8月的佛罗伦萨地区,第二次发生在2012年10月的西西里岛海峡。分析涉及世界水基金提供的沉淀液态水,以及在世界水基金本身确定的气象情景中运行时,power收集的反射率输出。分析的目的是通过评估在理想和非理想条件下通过雷达观测数据检索含水量所产生的误差,并将误差传播与WRF场景中微物理参数的可变性相关联,来确定这种情景与POWERS反射率输出之间的物理一致性。
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