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Impact of surface emissivity and atmospheric conditions on surface temperatures estimated from top of canopy brightness temperatures derived from Landsat 7 data

机译:表面发射率和大气条件对山底峰值7数据的顶部估计的表面温度的影响

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摘要

The method to derive surface temperature from top of canopy brightness temperature developed by Olioso (1995b) [20] is tested over the Avignon-Crau-Camargue area (France) using Landsat-7 ETM+ images. The difference between surface temperature and brightness temperature depends on surface emissivity, incident atmospheric radiation and the temperature itself. Differences up to 2 K were obtained for a surface emissivity of 0.97. It can increase up to 7 K when surface emissivity was 0.91. The surface temperature derived from Landsat data were in agreement with the ground measurements when using local calibration of the surface emissivity derivation method and a modification of the calculation of atmospheric radiation as compared to [20]. The impact of error in emissivity derivation was higher than the impact of errors in deriving atmospheric radiation.
机译:该方法从由Olioso(1995年b)开发篷亮度温度[20]之上使用陆地卫星-7 ETM +图像阿维尼翁-Crau-卡马格区域(法国)的测试顶派生表面温度。表面温度与亮度温度之间的差值依赖于表面发射率,入射大气辐射和温度本身。为0.97的表面辐射率获得差异高达2 k。它可以增加多达7 k当表面辐射率为0.91。相比于[20]使用表面发射率导出方法的局部校准和大气辐射的计算的变形时从陆地卫星数据导出的表面温度是在与地面测量值一致。在发射推导误差的影响比错误的推导大气辐射的影响高。

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