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Retrieving water surface temperature from archive LANDSAT thermal infrared data: Application of the mono-channel atmospheric correction algorithm over two freshwater reservoirs

机译:从LANDSAT红外热档案中检索水表面温度:单通道大气校正算法在两个淡水水库中的应用

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摘要

Water surface temperature is a key element in characterizing the thermodynamics of waterbodies, and for irregularly-shaped inland reservoirs, LANDSAT thermal infrared images are the best alternative yet for the retrieval of this parameter. However, images must be corrected mainly for atmospheric effects in order to be fully exploitable. The objective of this study is to validate the mono-channel correction algorithm for single-band thermal infrared LANDSAT data as put forward by Jiménez-Mu?oz et al. (2009). Two freshwater reservoirs in continental France were selected as study sites, and best use was made of all accessible image and field data. Results obtained are satisfactory and in accordance with the literature: r~2 values are above 0.90 and root-mean-square error values are comprised between 1 and 2℃. Moreover, paired Wilcoxon signed rank tests showed a highly significant difference between field and uncorrected image data, a very highly significant difference between uncorrected and corrected image data, and no significant difference between field and corrected image data. The mono-channel algorithm is hence recommended for correcting archive LANDSAT single-band thermal infrared data for inland waterbody monitoring and study.
机译:水面温度是表征水体热力学特征的关键因素,对于不规则形状的内陆水库,LANDSAT热红外图像是检索该参数的最佳替代方法。但是,图像必须主要针对大气影响进行校正才能被充分利用。这项研究的目的是验证Jiménez-Mu?oz等人提出的单波段热红外LANDSAT数据的单通道校正算法。 (2009)。选择了法国大陆的两个淡水水库作为研究地点,并充分利用了所有可获取的图像和野外数据。所得结果令人满意并符合文献:r〜2值在0.90以上,均方根误差值在1-2℃之间。此外,成对的威尔科克森符号秩检验表明,场和未经校正的图像数据之间存在极高的差异,未经校正和经过校正的图像数据之间具有极高的差异,而场与校正的图像数据之间无明显差异。因此,建议使用单通道算法来校正用于陆地水域监测和研究的LANDSAT单波段热红外归档数据。

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