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Best Water Vapor Information Layer of Himawari-8-Based Water Vapor Bands over East Asia

机译:东亚基于Himawari-8的水蒸气带的最佳水蒸气信息层

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摘要

The best water vapor information layer (BWIL), based on Himawari-8 water vapor bands over a typical region of East Asia, is investigated with the U.S. standard atmospheric profile and European Centre for Medium-Range Weather Forecasts Re-Analysis-interim (ERA-interim) dataset. The sensitivity tests reveal that the height of the BWIL is connected heavily to the amount of water vapor in the atmosphere, and to the satellite zenith angle. According to the temporal and spatial distribution analysis of BWIL, there are two basic features of BWIL. First, it lifts from January to July gradually and descends from July to October in the whole region. Second, it is higher over sea than land. These characteristics may stem from the transport of water vapor by monsoon and the concentration of water vapor in different areas. With multiple water vapor absorption IR bands, Himawari-8 can present water vapor information at multiple pressure layers. The water vapor content of ERA-interim in July 2016 is assessed as an example. By comparing the brightness temperatures from satellite observation and simulation under clear sky conditions, the ERA-interim reanalysis dataset may underestimate the amount of water vapor at pressure layers higher than 280 hPa and overestimate the water vapor quantity at pressure layers from 394 to 328 hPa, yet perform well at 320~260 hPa during this month.
机译:根据美国标准大气廓线和欧洲中距离天气预报中心(重新分析中期)(ERA),对东亚典型地区基于Himawari-8水汽带的最佳水汽信息层(BWIL)进行了研究。 -interim)数据集。灵敏度测试表明,BWIL的高度与大气中的水蒸气量以及卫星天顶角密切相关。根据BWIL的时空分布分析,BWIL有两个基本特征。首先,它在整个地区从1月到7月逐渐上升,从7月到10月下降。第二,海上比陆地高。这些特征可能源于季风对水蒸气的输送以及不同地区水蒸气的浓度。利用多个吸收水蒸气的红外波段,Himawari-8可以在多个压力层显示水蒸气信息。以2016年7月临时ERA的水蒸气含量为例。通过比较晴朗的天空条件下卫星观测和模拟的亮度温度,ERA-临时重新分析数据集可能会低估高于280 hPa的压力层的​​水蒸气量,并高估从394至328 hPa的压力层的​​水蒸气量,在这个月内,在320〜260 hPa的压力下仍表现良好。

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