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Retrieval of precipitable water using ADEOS-II / GLI near infrared data

机译:使用ADEOS-II / GLI近红外数据检索可沉淀水

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摘要

Retrieval of vertically integrated water vapor amount (precipitable water) is proposed using near infrared channels of Global Imager onboard Advanced Earth Observing Satellite-II (GLI / ADEOS-II). The principle of retrieval algorithm is based upon that adopted with Moderate Resolution Imaging Spectroradiometer (MODIS) onboard Earth Observing System (EOS) satellite series. Simulations were carried out with GLI Signal Simulator (GSS) to calculate the radiance ratio between water vapor absorbing bands and non-absorbing bands. As a result, it is found that for the case of high spectral reflectance background (a bright target) such as the land surface, the calibration curves are sensitive to the precipitable water variation. It turns out that aerosol loading has little influence on the retrieval over a bright target for the aerosol optical thickness less than about 1.0 at 500 nm wavelength. A preliminary analysis of GLI data was also carried out and the retrieved result is discussed. It is also anticipated that simultaneous retrieval of the water vapor amount using GLI data along with other channels will lead to improved accuracy of the determination of surface geophysical properties, such as vegetation, ocean color, and snow and ice, through the better atmospheric correction.
机译:提出了使用高级地球观测卫星II(GLI / ADEOS-II)上的Global Imager的近红外通道检索垂直积分水汽量(可沉淀水)的方法。检索算法的原理是基于中等分辨率成像光谱仪(MODIS)机载地球观测系统(EOS)卫星系列的原理。使用GLI信号模拟器(GSS)进行了仿真,以计算水蒸气吸收带和非吸收带之间的辐射比。结果发现,对于诸如土地表面的高光谱反射率背景(明亮目标)的情况,校准曲线对可沉淀的水变化敏感。事实证明,对于在500 nm波长处小于约1.0的气溶胶光学厚度,气溶胶负载对明亮目标的回收几乎没有影响。还对GLI数据进行了初步分析,并讨论了检索结果。还可以预期,通过更好的大气校正,使用GLI数据以及其他通道同时检索水蒸气量将导致提高确定表面地球物理属性(如植被,海洋颜色和雪和冰)的准确性。

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