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A quantitative analysis of urban growth and associated thermal characteristics using Landsat satellite data

机译:使用Landsat卫星数据的城市成长和相关热特性的定量分析

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Urbanization transforms the natural landscape to anthropogenic urban land use and changes surface physical characteristics. Accurate information on the extent of urban growth and its impacts on environment are of great interest for diverse purposes. As a result, increased research interest is being directed to the mapping and monitoring of urban land use using remote sensing techniques. However, there are many challenges in deriving urban extent and development densities quantitatively. This study utilized remote sensing data of Landsat TM/ETM+ to assess urban sprawl and its thermal characteristics in Changsha of central China. A new approach was proposed for quantitatively determining urban land use extents and development densities. Firstly, impervious surface areas were mapped by integrating spectral index derived from remotely sensed data. Then, the urban land extents and development densities were identified by using moving window calculation and selecting certain threshold values. The urban surface thermal patterns were investigated using Landsat thermal band. Analysis results suggest that urban extent and development density and surface thermal characteristics and patterns can be identified through, qualitatively based remotely sensed index and land surface temperature. Results show the built-up area and urban development densities have increased significantly in Changsha city since 1990s. The differences of urban development densities correspond to thermal effects where higher percent imperviousness is usually associated with higher surface temperature. Remotely sensed index and land surface temperature are demonstrated to be very useful sources in quantifying urban land use extent, development intensity, and urban thermal patterns.
机译:城市化将自然景观转变为人为城市土地利用,改变表面物理特性。准确的关于城市增长程度及其对环境的影响的信息对多种目的具有极大的兴趣。因此,使用遥感技术旨在提高研究兴趣,旨在使用遥感技术的城市土地利用的映射和监测。然而,在定量推导城市范围和发展密度方面存在许多挑战。本研究利用Landsat TM / ETM +的遥感数据来评估城市蔓延及其中部长沙的热特性。提出了一种新的方法,用于定量确定城市土地利用范围和发展密度。首先,通过积分来自远程感测数据的光谱索引来映射不透水的表面区域。然后,通过使用移动窗口计算来确定城市陆地范围和发展密度,并选择某些阈值。使用Landsat热带研究了城市表面热图案。分析结果表明,城市范围和发展密度和表面热特性和图案可以通过定性地基于远程感测的指数和陆地温度来识别。结果表明,自20世纪90年代以来,长沙市内置地区和城市发展密度大幅增加。城市发展密度的差异对应于较高百分比的不渗透性的热效应,通常与较高的表面温度相关。遥感指数和陆地表面温度被证明是量化城市土地使用程度,发展强度和城市热模式的非常有用的来源。

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