Land Surface Temperature Mapping using Geoinformation Techniques

C. F. Agbor, E. O. Makinde
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引用次数: 9

Abstract

General environmental management, which involves monitoring and modeling, requires the information of the Land surface temperature (LST) status of area concerned. Land surface temperature has gained relevance recognition over the years and there is need to develop approaches that can determine LST using satellite images. This study was conducted in Akure which has experienced rapid urbanization in recent time. The study utilized Landsat data of 1984, 1990, 2000, 2003, 2014 and 2016. The temperature data were derived from Landsat images using remote sensing algorithms for assessing LST from thermal infrared (TIR) data (bands 6 and 10). These data were processed and analyzed using tools in Idrisi and ArcGIS software systems. Satellite-derived land surface temperatures were validated with in-situ temperature data. The results revealed parabolic increase in temperature over the years and the changing pattern was investigated by adopting existing ecological indexes.. The validation operation revealed average bias value of between remote sensing- and ground-based data. This implies that remote sensing technique is reliable and therefore could be employed for large scale temperature mapping. The results could be used in mitigating urban heat island effectssuch as heat-related stress and ill-timed human deaths.
利用地理信息技术测绘地表温度
一般的环境管理涉及监测和模拟,需要有关地区的地表温度状态信息。多年来,陆地表面温度已经获得了相关的认识,需要开发利用卫星图像确定地表温度的方法。本研究是在阿库尔进行的,阿库尔近年来经历了快速的城市化。该研究利用了1984年、1990年、2000年、2003年、2014年和2016年的Landsat数据。温度数据来自Landsat图像,利用热红外(TIR)数据(波段6和10)评估地表温度的遥感算法。使用Idrisi和ArcGIS软件系统对这些数据进行处理和分析。卫星获得的地表温度与现场温度数据进行了验证。结果表明,历年气温呈抛物线型上升,并采用现有生态指标对其变化规律进行了研究。验证操作显示了遥感数据与地面数据之间的平均偏差值。这意味着遥感技术是可靠的,因此可以用于大尺度温度制图。研究结果可用于缓解城市热岛效应,如与热有关的压力和不合时宜的人类死亡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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