首页> 外文期刊>Photogrammetric Engineering & Remote Sensing: Journal of the American Society of Photogrammetry >Analysis of Impervious Surface and its Impact on Urban Heat Environment using the Normalized Difference Impervious Surface Index (NDISI)
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Analysis of Impervious Surface and its Impact on Urban Heat Environment using the Normalized Difference Impervious Surface Index (NDISI)

机译:使用归一化差异不透水面指数(NDISI)分析不透水面及其对城市热环境的影响

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摘要

The fast urban expansion has led to replacement of natural vegetation-dominated land surfaces by various impervious materials. This has a significant impact on the environment due to modification of heat energy balance. Timely understanding of spatiotemporal information of impervious surface has become more urgent as conventional methods for estimating impervious surface are very limited. In response to this need, this paper proposes a new index, normalized difference impervious surface index (ndisi), for estimating impervious surface. The application of the index to the Landsat etm+ image of Fuzhou City and the aster image of Xiamen City in China has shown that the new index can efficiently enhance and extract impervious surfaces from satellite imagery, and the normalized ndisi can represent the real percentage of impervious surface. The index was further used as an indicator to investigate the impact of impervious surface on urban heat environment by examination of its quantitative relationship with land surface temperature (lst), vegetation, and water using multivariate statistical analysis. The result reveals that impervious surface has a positive exponential relationship with lst rather than a simple linear one. This suggests that the areas with high percent impervious surface will accelerate lst rise and urban heat island development.
机译:快速的城市扩张导致各种不透水材料取代了自然植被为主的土地表面。由于热能平衡的改变,这对环境具有重大影响。由于估计不透水表面的常规方法非常有限,因此及时了解不透水表面的时空信息变得更加紧迫。为满足这种需求,本文提出了一种新的指数,即归一化差不透水表面指数(ndisi),用于估计不透水表面。该指数在中国福州市Landsat etm +影像和厦门市aster影像上的应用表明,该新指数可以有效地增强和提取卫星图像中的不透水表面,并且归一化的ndisi可以代表不透水的真实百分比。表面。该指数通过多变量统计分析通过检查不透水表面与地表温度(lst),植被和水的定量关系,进一步用作研究不透水表面对城市热环境的影响的指标。结果表明,不透水表面与lst具有正指数关系,而不是简单的线性表面。这表明不透水率高的地区将加速第一次上升和城市热岛的发展。

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