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Correlation analysis of the impact of land cover change and ratio vehicles on the dynamic of land surface temperature: case studies of Cirebon City, Province of West Java

机译:陆地覆盖变化与载体对陆地温度动态影响的关联分析:西爪哇省铁路城案例研究

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Global warming is causing an increase in surface temperature due to the depletion of vegetation and the increasing number of vehicles. In urban areas, an increase in temperature can significantly be degrading the urban heat island phenomenon, in the long run, it is capable of changing the microclimate. Surface temperature and density of vegetation retrieved from multi-temporal satellite remote sensing data. This research aims to analyze the effect of vehicle and vegetation ratio against the surface temperature in Cirebon town. This research utilizes data Landsat-5 TM and Landsat-8 OLI who validated with data on the MODIS period in 1998, 2008, as well as 2018. The interaction between surface temperature and density of the vegetation the spatial correlation analysis revealed through. Throughout the years 1998 until 2018 an increase in the surface temperature of 1.18 °C, which in follow with an increase in the number of vehicles at 142,171 unit for eighteen years and decrease in the area vegetation be 12,683 km~2. The highest surface temperature is centered on CBD, port, congestion-prone areas, industrial zones, and terminals.
机译:由于植被的消耗和越来越多的车辆,全球变暖导致表面温度增加。在城市地区,温度的增加可以显着降低城市热岛现象,从长远来看,它能够改变微气密。从多时间卫星遥感数据检索的植被表面温度和密度。该研究旨在分析车辆和植被率抵御航空城镇地表温度的影响。本研究利用1998年,2008年1998年的Modis期间验证的数据Landsat-5 TM和Landsat-8 Oli,以及2018年。植被的表面温度和密度之间的相互作用揭示了空间相关分析。在1998年至2018年之前,表面温度的增加为1.18°C,随后的142,171单位的车辆数量增加,142,171单位,并且面积植被减少为12,683 km〜2。最高的表面温度以CBD,端口,拥塞 - 易发的地区,工业区和终端为中心。

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