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Estimating of the total atmospheric precipitable water vapor amount from the Chinese new generation polar orbit FengYun meteorological satellite (FY-3) data

机译:根据中国新一代极地轨道风云气象卫星(FY-3)数据估算大气中总可降水量

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The total atmospheric precipitable water vapor amount (TWV) is a key variable for the study of the Earth's climate. This paper develops an algorithm to estimate the TWV over clear skies from the Medium Resolution Spectral Imager (MERSI) data in the near-IR channels. The MODTRAN 4 code is used to simulate the top of the atmospheric radiances for the MERSI channels. The results show that the proposed algorithm is suitable to estimate TWV form the absorbing channel centered at 0.940 µm and the atmospheric window channels centered at 0.865 µm and centered at 1.030 µm by the radiances over the clear pixels, with relative differences in the range of 10%–15%.
机译:大气中总可沉淀水蒸气量(TWV)是研究地球气候的关键变量。本文开发了一种算法,可以根据近红外通道中的中分辨率光谱成像器(MERSI)数据估算晴朗天空上的TWV。 MODTRAN 4代码用于模拟MERSI通道的最高大气辐射率。结果表明,所提出的算法适合于通过透明像素上的辐射来估计以0.940 µm为中心的吸收通道和以0.865 µm为中心,以1.030 µm为中心的大气窗口通道的TWV,相对差在10的范围内%–15%。

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