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Validation of Atmospheric Water Vapor from Several Satellite Instruments Using GPS Measurements at Spanish Stations Under Cloud-Free Conditions

机译:在无云条件下使用GPS测量的几种卫星仪器验证来自几种卫星仪器的大气水蒸气

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This work deals with the validation of integrated water vapor (IWV) products derived from the following satellite instruments: Global Ozone Monitoring Instrument (GOME-2), Moderate-Resolution Imaging Spectroradiometer (MODIS) on the Terra and Aqua satellites, Ozone Monitoring Instrument (OMI), Spining Enhanced Visible and InfraRed Imager (SEVIRI), Atmospheric Infrared Sounder (AIRS), and Scanning Imaging Absorption Spectrometer for Atmospheric Chartography (SCIAMACHY). IWV data from GPS in nine ground-based stations located in the Iberian Peninsula are used as reference. The study period extends from 2007 to 2012, under cloud-free conditions. All satellite instruments showed a tendency to reduce IWV extreme values: low IWV is overestimated while high IWV is underestimated. As for the influence of solar zenith angle (SZA), Seasonal dependence is mainly due to the SZA and IWV typical values in each season. In general, in summer the tendency is to underestimate with low inter-quartile range (IQR) and in winter the trend is to overestimate with high IQR.
机译:这与集成水蒸气(IWV)从下面的卫星仪器衍生产品的验证工作涉及:全球臭氧对水地卫星监测仪(GOME-2),中分辨率成像光谱仪(MODIS),臭氧监测仪( OMI),纺纱增强可见光和红外成像仪(SEVIRI),大气红外探测器(AIRS),并扫描成像吸收光谱仪大气制图(SCIAMACHY)。来自IBERIAN半岛的九个地基站GPS的IWV数据用作参考。在无云条件下,研究期从2007年到2012年延伸。所有卫星仪器都显示出降低IWV极值的趋势:低IWV高估,而高IWV低估。至于太阳能天顶角(SZA)的影响,季节性依赖主要是由于每个季节的SZA和IWV典型值。一般来说,在夏天,倾向于低于间歇范围(IQR),在冬季,趋势是高度高度高估。

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