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Cirrus cloud ice water content radar algorithm evaluation using an explicit cloud microphysical model

机译:利用显式云微观模型评估卷云冰水含量雷达算法

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A series of cirrus cloud simulations performed using a model with explicit cloud microphysics is applied to testing ice water content retrieval algorithms based on millimeter-wave radar reflectivity measurements. The simulated ice particle size spectra over a 12-h growth/dissipation life cycle are converted to equivalent radar reflectivity factors Z_e and visible optical extinction coefficients #sigma#, which are used as a test dataset to intercompare the results of various algorithms, This approach shows that radar Z_e-only approaches suffer from significant problems related to basic temperature-dependent cirrus cloud processes, although most algorithms work well under limited conditions (presumably similar to those of the empirical datasets fromwhich each was derived). However, when lidar or radiometric measurements of #sigma# or cloud optical depth are used to constrain the radar data, excellent agreement with the modeled contents can be achieved under the conditions simulated. Implications for the satellite-based active remote sensing of cirrus clouds are discussed. In addition to showing the utility of sophisticated cloud-resolving models for testing remote sensing algorithms, the results of the simulations for cloud-top temperatures of -50 deg C, -60 deg C, and -70 deg C illustrate some fundamental properties of cirrus clouds that are regulated by the adiabatic process.
机译:使用具有显式云微观物理模型的一系列卷云模拟被用于测试基于毫米波雷达反射率测量的冰水含量检索算法。将在12小时的生长/耗散生命周期内模拟的冰粒尺寸光谱转换为等效的雷达反射率因子Z_e和可见光消光系数#sigma#,用作测试数据集以相互比较各种算法的结果,这种方法结果表明,仅Z_e雷达方法会遇到与温度相关的卷云基本过程相关的重大问题,尽管大多数算法在有限的条件下都可以很好地工作(大概与从中得出的经验数据集相似)。但是,当使用激光雷达或#sigma#的辐射测量或云光学深度来约束雷达数据时,在模拟条件下可以实现与建模内容的出色一致性。讨论了对基于卫星的卷云主动遥感的意义。除了显示复杂的云解析模型用于测试遥感算法的实用性之外,-50摄氏度,-60摄氏度和-70摄氏度的云顶温度的仿真结果还说明了卷云的一些基本特性由绝热过程调节的云。

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