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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Comparison of using distribution-specific versus effective radius methods for hydrometeor single-scattering properties for all-sky microwave satellite radiance simulations with different microphysics parameterization schemes
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Comparison of using distribution-specific versus effective radius methods for hydrometeor single-scattering properties for all-sky microwave satellite radiance simulations with different microphysics parameterization schemes

机译:使用不同微孔参数化方案的全天微波卫星辐射仿真的水流仪单散射特性使用分布特异性与有效半径方法的比较

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摘要

The Community Radiative Transfer Model (CRTM) presently uses one look-up table (LUT) of cloud and precipitation single-scattering properties at microwave frequencies, with which any particle size distribution may interface via effective radius. This may produce scattering properties insufficiently representative of the model output if the microphysics parameterization scheme particle size distribution mismatches that assumed in constructing the LUT, such as one being exponential and the other monodisperse, or assuming different particle bulk densities. The CRTM also assigns a 5 μmeffective radius to all nonprecipitating clouds, an additional inconsistency. Brightness temperatures are calculated from 3 h convection-permitting simulations of Hurricane Karl (2010) by the Weather Research and Forecasting model; each simulation uses one of three different microphysics schemes. For each microphysics scheme, a consistent cloud scattering LUT is constructed; the use of these LUTs produces differences in brightness temperature fields that would be better for analyzing and constraining microphysics schemes than using the CRTM LUT as-released. Other LUTs are constructed which contain one of the known microphysics inconsistencies with the CRTM LUT as-released, such as the bulk density of graupel, but are otherwise microphysics-consistent; differences in brightness temperature to using an entirely microphysics-consistent LUT further indicate the significance of that inconsistency. The CRTM LUT as-released produces higher brightness temperature than using microphysics-consistent LUTs. None of the LUTs can produce brightness temperatures that can match well to observations at all frequencies, which is likely due in part to the use of spherical particle scattering.
机译:社区辐射转移模型(CRTM)目前使用微波频率下的云和降水单散射特性的一个查询表(LUT),其中任何粒度分布都可以通过有效半径界面界面。这可能产生散射特性,如果在构建LUT的微观参数方案方案粒度分布的粒度分布不匹配,例如一个是指数和另一个单分散的单位,或者假设不同的粒子堆积密度,则可以产生模型输出的散射特性。 CRTM还将5μmferfective半径分配给所有非剥离云,额外的不一致。亮度温度由天气研究和预测模型的飓风卡尔(2010)的3小时对流扫描次数计算;每种模拟使用三种不同的微专家方案中的一种。对于每种微观物理方案,构建一致的云散射LUT;这些LUT的使用产生亮度温度场的差异,可以更好地分析和约束微物质方案而不是使用释放的CRTM LUT。构建其它LUT,其含有其中一种已知的微物质不创的与释放的CRTM LUT的不一致,例如Graupel的堆积密度,而是微生物囊 - 一致;亮度温度与完全微妙一致的LUT的差异进一步表明了这种不一致的重要性。 CRTM作为释放的CRTM LUT产生较高的亮度温度,而不是使用微妙的一致性LUT。没有一点LUT可以产生亮度温度,可以与所有频率的观察相匹配,这可能部分地归因于球形颗粒散射。

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  • 作者单位

    Department of Meteorology and Atmospheric Science and Center for Advanced Data Assimilation and Predictability Techniques Pennsylvania State University University Park Pennsylvania USA;

    Department of Meteorology and Atmospheric Science and Center for Advanced Data Assimilation and Predictability Techniques Pennsylvania State University University Park Pennsylvania USA;

    Department of Meteorology and Atmospheric Science and Center for Advanced Data Assimilation and Predictability Techniques Pennsylvania State University University Park Pennsylvania USA;

    Department of Meteorology and Atmospheric Science and Center for Advanced Data Assimilation and Predictability Techniques Pennsylvania State University University Park Pennsylvania USA;

    Cooperative Institute for Meteorological Satellite Studies Space Science and Engineering Center University of Wisconsin-Madison Madison Wisconsin USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Comparison; using distribution-specific versus; effective radius methods;

    机译:比较;使用特定于分配的与;有效的半径方法;

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