首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Retrieval of Atmospheric Water Vapor Density With Fine Spatial Resolution Using Three-Dimensional Tomographic Inversion of Microwave Brightness Temperatures Measured by a Network of Scanning Compact Radiometers
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Retrieval of Atmospheric Water Vapor Density With Fine Spatial Resolution Using Three-Dimensional Tomographic Inversion of Microwave Brightness Temperatures Measured by a Network of Scanning Compact Radiometers

机译:使用三维扫描层析辐射计网络测量的微波亮度温度的三维层析成像反演,以精细的空间分辨率检索大气水汽密度

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摘要

Quantitative precipitation forecasting is currently limited by the paucity of observations on sufficiently fine temporal and spatial scales. Three-dimensional water vapor fields can be retrieved with improved spatial coverage from measurements obtained using a network of scanning microwave radiometers. To investigate this potential, an observation system simulation experiment was performed in which synthetic examples of retrievals using a network of radiometers were compared with results from the Weather Research and Forecasting model at a grid scale of 500 m. These comparisons show that the 3-D water vapor field can be retrieved with an accuracy of better than 15%–20%. A ground-based demonstration network of three compact microwave radiometers was deployed at the Atmospheric Radiation Measurement Southern Great Plains site in Oklahoma. Results using these network measurements demonstrated the first retrieval of the 3-D water vapor field in the troposphere at fine spatial and temporal resolutions.
机译:当前,由于在足够精细的时空尺度上缺乏观测资料,降水的定量预报受到限制。通过使用扫描微波辐射计网络获得的测量结果,可以提高空间覆盖率来检索三维水蒸气场。为了研究这种潜力,进行了一个观测系统模拟实验,在该实验中,使用辐射计网络的综合检索示例与500 m网格规模的“天气研究与预测”模型的结果进行了比较。这些比较表明,可以以高于15%–20%的精度检索3-D水蒸气场。在俄克拉荷马州的大气辐射测量南部大平原地区部署了由三个紧凑型微波辐射计组成的地面演示网络。使用这些网络测量的结果表明,对流层中3-D水蒸气场首次以良好的空间和时间分辨率获得了。

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