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Evaluation of Long-Term Cloud-Resolving Model Simulations Using Satellite Radiance Observations and Multifrequency Satellite Simulators

机译:利用卫星辐射观测和多频卫星模拟器评估长期的云解析模型模拟

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This paper proposes a methodology known as the Tropical Rainfall Measuring Mission (TRMM) Triple-Sensor Three-Step Evaluation Framework (T3EF) for the systematic evaluation of precipitating cloud types and microphysics in a cloud-resolving model (CRM). T3EF utilizes multisensor satellite simulators and novel statistics of multisensor radiance and backscattering signals observed from the TRMM satellite. Specifically, T3EF compares CRM and satellite observations in the form of combined probability distributions of precipitation radar (PR) reflectivity, polarization-corrected microwave brightness temperature (T_b), and infrared T_b, to evaluate the candidate CRM.rnT3EF is used to evaluate the Goddard Cumulus Ensemble (GCE) model for cases involving the South China Sea Monsoon Experiment (SCSMEX) and the Kwajalein Experiment (KWAJEX). This evaluation reveals that the GCE properly captures the satellite-measured frequencies of different precipitating cloud types in the SCSMEX case but overestimates the frequencies of cumulus congestus in the KWAJEX case. Moreover, the GCE tends to simulate excessively large and abundant frozen condensates in deep precipitating clouds as inferred from the overestimated GCE-simulated radar reflectivities and microwave T_b depressions. Unveiling the detailed errors in the GCE's performance provides the better direction for model improvements.
机译:本文提出了一种称为热带雨量测量任务(TRMM)三传感器三步评估框架(T3EF)的方法,用于在云解析模型(CRM)中对降水类型和微观物理学进行系统评估。 T3EF利用多传感器卫星模拟器和从TRMM卫星观察到的多传感器辐射和反向散射信号的新颖统计数据。具体来说,T3EF以降水雷达(PR)反射率,偏振校正的微波亮度温度(T_b)和红外T_b的组合概率分布的形式比较CRM和卫星观测结果,以评估候选CRM.rnT3EF用于评估Goddard涉及南中国海季风试验(SCSMEX)和夸贾林试验(KWAJEX)的案例的积云模型(GCE)。该评估表明,GCE可以正确捕获SCSMEX案例中不同降水云类型的卫星测量频率,而在KWAJEX案例中高估了积云的频率。此外,从高估了GCE模拟的雷达反射率和微波T_b凹陷可以推断出,GCE倾向于模拟深部降水云中的过大和丰富的冻结凝结物。揭示GCE性能中的详细错误为模型改进提供了更好的指导。

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  • 来源
    《Journal of atmospheric and oceanic technology》 |2009年第7期|1261-1274|共14页
  • 作者单位

    Laboratory for Atmospheres, NASA Goddard Space Flight Center, Greenbelt, and Goddard Earth Science and Technology Center, University of Maryland, Baltimore County, Baltimore, Maryland;

    Laboratory for Atmospheres, NASA Goddard Space Flight Center, Greenbelt, and Goddard Earth Science and Technology Center, University of Maryland, Baltimore County, Baltimore, Maryland;

    Laboratory for Atmospheres, NASA Goddard Space Flight Center, Greenbelt, Maryland;

    Hydrospheric Atmospheric Research Center, Nagoya University, Nagoya, Japan;

    Laboratory for Atmospheres, NASA Goddard Space Flight Center, Greenbelt, and Joint Center for Earth Systems Technology, University of Maryland, Baltimore County, Baltimore, Maryland;

    Laboratory for Atmospheres, NASA Goddard Space Flight Center, Greenbelt, and Science Systems and Applications, Inc., Lanham, Maryland;

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