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A General Split Window Algorithm for Land Surface Temperature Estimation

机译:估计地表温度的通用分割窗口算法

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摘要

A general multichannel algorithm for land surface temperature estimation is described. It has been set up by simulations of NOAA / AVHRR-2 measurements in order to parameterize the temperature correction due to atmospheric water vapor absorption and deviation of surface emissivity from unity at 11 and 12 μm wavelengths. The parameterization is based on model calculations performed with FASCODE, a line - by -line radiative transfer program. A comparison with one particular algorithm selected by ESA to produce global thermal maps of the Earth shows no significant difference in the retrieved surface temperature for water vapor around 2.5 g/cm~2. For greater deviations from this value of water vapor content the difference in the results can be remarkably large. Model calculations have been performed for deviations of each parameter (water vapor and surface emissivity) individually and for both parameters simultaneously. The approach used allows the application of the algorithm to other sensors. In fact, the next step of our activity on this subject envisages its application to the appropriate bands of the MODIS sensor.
机译:描述了用于陆地表面温度估计的通用多通道算法。它是通过NOAA / AVHRR-2测量的模拟设置的,目的是对由于大气中水汽的吸收以及11和12μm波长下的表面发射率偏离单位而引起的温度校正进行参数化。参数化基于FASCODE(逐行辐射传输程序)执行的模型计算。与欧空局选择的一种生成地球全局热图的特定算法进行比较,结果表明,水蒸气在2.5 g / cm〜2左右的情况下,检索到的表面温度没有显着差异。对于与该水蒸气含量的值更大的偏差,结果的差异可以非常大。已经分别对每个参数(水蒸气和表面发射率)的偏差进行了模型计算,并且对两个参数同时进行了模型计算。所使用的方法允许将该算法应用于其他传感器。实际上,我们在此主题上的下一步活动是将其应用于MODIS传感器的相应频段。

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