Backward and Forward Scattering by the Melting Layer Composed of Oblate Spheroidal Hydrometeors at 5-100 GHz

W. Zhang
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引用次数: 2

Abstract

This paper reports the study of the differential reflectivity, specific attenuation and specific phase shift due to the melting layer composed of oblate spheroidal hydrometeors. The truncation and recurrence used in the point matching technique are adjusted and this technique is employed in the computations at 5-100 GHz for five raindrop size distributions at rain rates below 12.5 mm/h. In general, the differential reflectivity at centimeter wavelengths agrees with available radar measurements. The computed results at millimeter wavelengths are anticipated as well. This presentation could be instructive not only for some radar applications but also for future radar measurements. The vertical profiles of the specific attenuation and phase shift are presented at 5-100 GHz. The differential attenuation and phase shift can be used in the calculation of the depolarizations caused by the melting layer. This could lead to more comprehensive studies of the depolarizations.
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5-100 GHz扁圆球状水成物熔融层的前向和后向散射
本文报道了由扁圆球状水成物组成的熔化层所引起的差反射率、比衰减和比相移的研究。对点匹配技术中使用的截断和递归进行了调整,并将该技术应用于5-100 GHz下降雨速率低于12.5 mm/h的5种雨滴大小分布的计算。一般来说,厘米波长处的微分反射率与现有的雷达测量值一致。并对毫米波的计算结果进行了预测。这不仅对某些雷达应用有指导意义,而且对未来的雷达测量也有指导意义。给出了在5 ~ 100 GHz频段的比衰减和相移的垂直分布。微分衰减和相移可用于计算熔化层引起的退极化。这可能导致对去极化的更全面的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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