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Performance assessment of a triple-frequency spaceborne cloud-precipitation radar concept using a global cloud-resolving model

机译:使用全球云解析模型对三频星载云降水雷达概念的性能评估

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摘要

Multi-frequency radars offer enhanced detection of clouds and precipitation compared to single-frequency systems, and are able to make more accurate retrievals when several frequencies are available simultaneously. An evaluation of a spaceborne three-frequency Ku-/Ka-/W-band radar system is presented in this study, based on modeling radar reflectivities from the results of a global cloud-resolving model with a 875m grid spacing. To produce the reflectivities, a scattering model has been developed for each of the hydrometeor types produced by the model, as well as for melting snow. The effects of attenuation and multiple scattering on the radar signal are modeled using a radiative transfer model, while nonuniform beam filling is reproduced with spatial averaging. The combined effects of these are then quantified both globally and in six localized case studies. Two different orbital scenarios using the same radar are compared. Overall, based on the results, it is expected that the proposed radar would detect a high-quality signal in most clouds and precipitation. The main exceptions are the thinnest clouds that are below the detection threshold of the W-band channel, and at the opposite end of the scale, heavy convective rainfall where a combination of attenuation, multiple scattering and nonuniform beam filling commonly cause significant deterioration of the signal; thus, while the latter can be generally detected, the quality of the retrievals is likely to be degraded.
机译:与单频系统相比,多频雷达可增强对云层和降水的检测能力,并且当同时提供多个频率时,能够进行更精确的检索。本研究基于对875m网格间距的全球云解析模型的结果建模雷达反射率,从而对星载三频Ku- / Ka- / W波段雷达系统进行了评估。为了产生反射率,已经为该模型产生的每种水凝物类型以及融雪开发了散射模型。使用辐射传输模型对衰减和多重散射对雷达信号的影响进行建模,同时通过空间平均来再现不均匀的波束填充。然后,在全球范围内和在六个局部案例研究中量化这些因素的综合影响。比较了使用同一雷达的两种不同的轨道情景。总体而言,根据结果,预计拟议雷达将在大多数云层和降水中检测到高质量信号。主要的例外是最薄的云层,其低于W波段通道的检测阈值,并且在尺度的另一端,对流降雨很大,在这种情况下,衰减,多次散射和不均匀的光束填充相结合通常会导致显着恶化。信号;因此,虽然通常可以检测到后者,但是检索的质量可能会降低。

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