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A simplified scheme for obtaining precipitation and vertical hydrometeor profiles from passive microwave sensors

机译:从被动微波传感器获得降水和垂直水汽剖面的简化方案

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Presents a computationally simple technique for retrieving the precipitation and vertical hydrometeor profiles from downward viewing radiometers. The technique is computationally much less expensive than previous profiling schemes and has been designed specifically to allow for tractability of assumptions. In this paper, the emphasis is placed upon passive microwave applications, but the combination of passive with active microwave sensors, infrared sensors, or other a priori information can be adapted easily to the framework described. The technique is based upon a Bayesian approach. The authors use many realizations of the Goddard Cumulus Ensemble model to establish a prior probability density function of rainfall profiles. Detailed three-dimensional radiative transfer calculations are used to determine the upwelling brightness temperatures from the cloud model to establish the similarity of radiative signatures and thus the probability that a given profile is actually observed. In this study, the authors show that good results may be obtained by weighting profiles from the prior probability density function according to their deviation from the observed brightness temperatures. Examples of the retrieval results are shown for oceanic as well as land situations. Microwave data from the Advanced Microwave Precipitation Radiometer (AMPR) instrument are used to illustrate the retrieval structure results for high-resolution data while SSM/I is used to illustrate satellite applications. Simulations are performed to compare the expected retrieval performance of the SSM/I instrument with that of the upcoming TMI instrument aboard the Tropical Rainfall Measuring Mission (TRMM) to be launched in August 1997. These simulations show that correlations of /spl sim/0.77 may be obtained for 10-km retrievals of the integrated liquid water content based upon SSM/I channels. This correlation increases to /spl sim/0.90 for the same retrievals using the TMI channels and resolution. Due to the lack of quantitative validation data, hydrometeor profiles cannot be compared directly but are instead converted to an equivalent reflectivity structure and compared to existing radar observations where possible.
机译:提出了一种计算简单的技术,用于从向下观察的辐射计中检索降水和垂直水凝物剖面。该技术在计算上比以前的概要分析方案便宜得多,并且经过专门设计以允许假设的易处理性。在本文中,重点放在无源微波应用上,但是无源与有源微波传感器,红外传感器或其他先验信息的组合可以轻松地适应所描述的框架。该技术基于贝叶斯方法。作者使用Goddard Cumulus Ensemble模型的许多实现来建立降雨剖面的先验概率密度函数。详细的三维辐射转移计算用于确定云模型的上升亮度温度,从而建立辐射特征的相似性,从而确定实际观测到给定轮廓的概率。在这项研究中,作者表明,通过根据先验概率密度函数与观测到的亮度温度的偏差对加权轮廓进行加权,可以获得良好的结果。显示了针对海洋和陆地情况的检索结果示例。来自高级微波降水辐射计(AMPR)仪器的微波数据用于说明高分辨率数据的检索结构结果,而SSM / I用于说明卫星应用。进行了模拟,以比较SSM / I仪器与即将于1997年8月发射的热带降雨测量任务(TRMM)上即将推出的TMI仪器的预期检索性能。这些模拟表明/ spl sim / 0.77的相关性可能对于基于SSM / I通道的10公里综合液态水含量的反演,可以获得。对于使用TMI通道和分辨率进行的相同检索,此相关性增加到/ spl sim / 0.90。由于缺少定量验证数据,无法直接比较水凝物剖面,而是将其转换为等效的反射率结构,并在可能的情况下与现有雷达观测结果进行比较。

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