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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >EVALUATION OF MODEL-SIMULATED UPPER TROPOSPHERE HUMIDITY USING 6.7 MU-M SATELLITE OBSERVATIONS
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EVALUATION OF MODEL-SIMULATED UPPER TROPOSPHERE HUMIDITY USING 6.7 MU-M SATELLITE OBSERVATIONS

机译:利用6.7 MU-M卫星观测值对模型模拟的对流层上湿度进行评估

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Use of mesoscale models to simulate details of upper tropospheric relative humidity (UTRH) fields represents an important step toward understanding the evolution of small-scale water vapor structures that are responsible for cirrus growth and dissipation. Because mesoscale model UTRH simulations require initialization and verification and since radiosonde measurements of relative humidity are unreliable in the upper troposphere, we use GOES 6.7 mu m water vapor observations to validate the Pennsylvania State University/National Center for Atmospheric Research nonhydrostatic mesoscale model (MM5) simulations of UTRH. To accomplish this task, MM5 temperature and moisture profiles are used in a forward calculation of the clear-sky 6.7 mu m brightness temperature (T-6.7), which is converted into UTRH. A statistical analysis is done to evaluate MM5 simulations of T-6.7 and UTRH against the GOES 7 observations. For the simulations, an average correlation coefficient of 0.80 was found with a dry bias of 1.6 K. In terms of UTRH, the average correlation coefficient was 0.65 with a dry bias of 3.3%. We also found that MM5 fails to simulate accurately extrema in the UTRH field. [References: 21]
机译:使用中尺度模型来模拟对流层上层相对湿度(UTRH)场的细节代表了迈向了解导致卷云生长和消散的小规模水蒸气结构演变的重要一步。由于中尺度模型UTRH模拟需要初始化和验证,并且由于对流层上方相对湿度的无线电探空仪测量不可靠,因此我们使用GOES 6.7微米水蒸气观测来验证宾夕法尼亚州立大学/美国国家大气研究中心的非静水中尺度模型(MM5) UTRH的模拟。为了完成此任务,MM5温度和湿度曲线用于对6.7微米晴空亮度温度(T-6.7)进行正向计算,并将其转换为UTRH。进行了统计分析,以根据GOES 7观察评估T-6.7和UTRH的MM5模拟。对于仿真,发现平均相关系数为0.80,干偏置为1.6K。对于UTRH,平均相关系数为0.65,干偏置为3.3%。我们还发现MM5无法准确模拟UTRH场中的极值。 [参考:21]

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