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Lidar and radar measurements of the melting layer: observations of dark and bright band phenomena

机译:LIDAR和熔融层的雷达测量:暗和明亮的带现象的观察

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Multi-wavelength lidar measurements in the melting layer revealing the presence of dark and bright bands have been performed by the University of BASILicata Raman lidar system (BASIL) during a stratiform rain event. Simultaneously radar measurements have been also performed from the same site by the University of Hamburg cloud radar MIRA 36 (35.5 GHz), the University of Hamburg dual-polarization micro rain radar (24.15 GHz) and the University of Manchester UHF wind profiler (1.29 GHz). Measurements from BASIL and the radars are illustrated and discussed in this paper for a specific case study on 23 July 2007 during the Convective and Orographically-induced Precipitation Study (COPS). Simulations of the lidar dark and bright band based on the application of concentric/eccentric sphere Lorentz-Mie codes and a melting layer model are also provided. Lidar and radar measurements and model results are also compared with measurements from a disdrometer on ground and a two-dimensional cloud (2DC) probe on-board the ATR42 SAFIRE. Measurements and model results are found to confirm and support the conceptual microphysical/scattering model elaborated by Sassen et al. (2005).
机译:熔化层中的多波长激光雷达测量显示在层状雨季事件中大型巴西拉拉曼利坎乐队系统(罗勒)大学进行了黑暗和明亮频段的存在。同时还从汉堡云雷达Mira 36(35.5 GHz),汉堡双极化微雨雷达(24.15GHz)和曼彻斯特UHF风廓线大学(1.29GHz )。在本文中示出并讨论了罗勒和雷达的测量,以便在对流和脸部诱导的沉淀研究(警察)中2007年7月23日的特定案例研究。还提供了基于同心/偏心球Lorentz-Mie码的应用和熔化层模型的LiDAR暗和亮带的模拟。 LIDAR和雷达测量和模型结果也将与ATR42 SUSIVE在地面和二维云(2DC)探针上的测量结果进行比较。发现测量和模型结果确认并支持Sassen等人阐述的概念微物理/散射模型。 (2005)。

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