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Long-range cross-correlation between urban impervious surfaces and land surface temperatures

机译:城市不透水面与地表温度之间的长期互相关

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摘要

The thermal effect of urban impervious surfaces (UIS) is a complex problem. It is thus necessary to study the relationship between UIS and land surface temperatures (LST) using complexity science theory and methods. This paper investigates the long-range cross-correlation between UIS and LST with detrended cross-correlation analysis and multifractal detrended cross-correlation analysis, utilizing data from downtown Shanghai, China. UIS estimates were obtained from linear spectral mixture analysis, and LST was retrieved through application of the mono-window algorithm, using Landsat Thematic Mapper and Enhanced Thematic Mapper Plus data for 1997-2010. These results highlight a positive long-range cross-correlation between UIS and LST across People's Square in Shanghai. LST has a long memory for a certain spatial range of UIS values, such that a large increment in UIS is likely to be followed by a large increment in LST. While the multifractal long-range cross-correlation between UIS and LST was observed over a longer time period in the W-E direction (2002-2010) than in the N-S (2007-2010), these observed correlations show a weakening during the study period as urbanization increased.
机译:城市不透水表面(UIS)的热效应是一个复杂的问题。因此,有必要使用复杂性科学理论和方法研究UIS与地表温度(LST)之间的关系。本文利用中国上海市区的数据,通过去趋势互相关分析和多重分形去趋势互相关分析研究了UIS和LST之间的长期互相关。 UIS估计值是通过线性频谱混合分析获得的,LST是通过使用1997-2010年Landsat主题映射器和Enhanced Thematic Mapper Plus数据通过应用单窗口算法检索的。这些结果突显了整个上海人民广场的UIS和LST之间存在正的长期互相关。 LST对于UIS值的某个空间范围具有较长的内存,因此UIS中的大增量很可能跟在LST中的大增量。虽然观察到UIS和LST之间在WE方向(2002-2010年)比NS(2007-2010年)更长的时间上存在多重分形远相关性,但是这些观察到的相关性在研究期间显示出减弱的趋势:城市化进程加快。

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