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The Evaluation of CloudSat and CALIPSO Ice Microphysical Products Using Ground-Based Cloud Radar and Lidar Observations

机译:利用地面云雷达和激光雷达观测评估CloudSat和CALIPSO冰微物理产品

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摘要

In this paper, the statistical properties of tropical ice clouds (ice water content, visible extinction, effective radius, and total number concentration) derived from 3 yr of ground-based radar-lidar retrievals from the U.S. Department of Energy Atmospheric Radiation Measurement Climate Research Facility in Darwin, Australia, are compared with the same properties derived using the official CloudSat microphysical retrieval methods and from a simpler statistical method using radar reflectivity and air temperature. It is shown that the two official CloudSat microphysical products (2B-CWC-RO and 2B-CWC-RVOD) are statistically virtually identical. The comparison with the ground-based radar-lidar retrievals shows that all satellite methods produce ice water contents and extinctions in a much narrower range than the ground-based method and overestimate the mean vertical profiles of microphysical parameters below 10-km height by over a factor of 2. Better agreements are obtained above 10-km height. Ways to improve these estimates are suggested in this study. Effective radii retrievals from the standard CloudSat algorithms are characterized by a large positive bias of 8-12 μm. A sensitivity test shows that in response to such a bias the cloud longwave forcing is increased from 44.6 to 46.9 W m~(-2) (implying an error of about 5%), whereas the negative cloud shortwave forcing is increased from -81.6 to -82.8 W m~(-2). Further analysis reveals that these modest effects (although not insignificant) can be much larger for optically thick clouds. The statistical method using CloudSat reflectivities and air temperature was found to produce inaccurate mean vertical profiles and probability distribution functions of effective radius. This study also shows that the retrieval of the total number concentration needs to be improved in the official CloudSat microphysical methods prior to a quantitative use for the characterization of tropical ice clouds. Finally, the statistical relationship used to produce ice water content from extinction and air temperature obtained by the Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observation (CALIPSO) satellite is evaluated for tropical ice clouds. It is suggested that the CALIPSO ice water content retrieval is robust for tropical ice clouds, but that the temperature dependence of the statistical relationship used should be slightly refined to better reproduce the radar-lidar retrievals.
机译:本文根据美国能源部大气辐射测量气候研究的3年地面雷达-激光雷达反演得出的热带冰云的统计特性(冰水含量,可见灭绝,有效半径和总浓度)将澳大利亚达尔文市的设施与使用官方CloudSat微物理检索方法得出的相同属性以及使用雷达反射率和气温的简单统计方法进行了比较。结果表明,两种正式的CloudSat微物理产品(2B-CWC-RO和2B-CWC-RVOD)在统计上实际上是相同的。与基于地面的雷达-激光雷达反演结果的比较表明,与基于地面的方法相比,所有卫星方法产生的冰水含量和绝灭范围都比基于地面的方法窄得多,并且高估了10 km以下高度的微物理参数的平均垂直剖面超过1个百分点。系数为2。高于10公里的高度可获得更好的协议。这项研究提出了改善这些估计的方法。从标准CloudSat算法获得的有效半径检索的特征是8-12μm的大正偏差。灵敏度测试表明,响应于这种偏差,云长波强迫从44.6 W m〜(-2)增加到46.9 W m〜(-2)(隐含约5%的误差),而负云短波强迫从-81.6增加到-82.8 W m〜(-2)。进一步的分析表明,对于光学上较厚的云而言,这些适度的影响(尽管不是微不足道)可能更大。发现使用CloudSat反射率和气温的统计方法会产生不准确的平均垂直剖面和有效半径的概率分布函数。这项研究还表明,在定量用于表征热带冰云之前,需要使用官方的CloudSat微观物理方法改进总浓度的检索。最后,评估了由云气溶胶激光雷达和红外探路者卫星观测(CALIPSO)卫星获得的消光和气温所产生的冰水含量之间的统计关系,用于热带冰云。建议CALIPSO冰水含量反演对于热带冰云是稳健的,但是应该略微完善所使用的统计关系对温度的依赖性,以更好地再现雷达-雷达反演。

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  • 来源
    《Journal of atmospheric and oceanic technology》 |2010年第5期|p.793-810|共18页
  • 作者单位

    Centre for Australian Weather and Climate Research, Melbourne, Victoria, Australia, and Laboratoire Atmosphere, Milieux, et Observations Spatiales (LATMOS), Velizy, France;

    rnUniversity of Reading, Reading, United Kingdom;

    rnUniversity of Reading, Reading, United Kingdom;

    rnColorado State University, Fort Collins, Colorado;

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