Institute of Land Administration, Debre Markos University 269, Debre Markos, Ethiopia.
Department of Geography and Environmental Studies, Woldia University, Woldia, Ethiopia.
Environ Sci Pollut Res Int. 2022 Jun;29(28):42493-42508. doi: 10.1007/s11356-022-19997-z. Epub 2022 Apr 3.
The land surface temperature (LST) has been increased worldwide from time to time with the rapid increase of impervious surfaces such as built-up areas, parking lots, and asphalt and concrete roads. Several studies have examined the impacts of spatial dynamics of land use land cover (LULC) on the spatial variability of LST. However, there have not been systematic reviews conducted about the relationship between LULC and LST. Therefore, this study was conducted to investigate the relationship between LULC and LST with the main objective of synthesizing the relationship between LULC and LST using remote sensing data. An extensive literature search was conducted from the most familiar electronic databases such as Science Direct, Scopus, Web of Science, and Google Scholar between 27/08/2021 and 28/08/2021. The studies that are focussed on the relationship between LULC and LST and/or the impacts of LULC change on the LST using remote sensing were included for the analysis. Besides, papers conducted over the last 5 years (January/2016 to August/2021) were selected in this systematic study since this study focused on the most recent studies. In this systematic review, 100 studies were included for the study analysis. Based on the analysis of this study, built-up land has the first highest LST from the thirteen LULC types. Besides, bare land has a higher LST next to built-up land. On the other side, snow cover has the lowest LST among the LULC types. Lastly, waterbodies have a lower LST compared to vegetation cover.
随着建设用地、停车场、沥青和混凝土道路等不透水面的迅速增加,全球范围内的地表温度(LST)不时升高。一些研究已经检验了土地利用/土地覆盖(LULC)的空间动态对 LST 空间变异性的影响。然而,尚未对 LULC 和 LST 之间的关系进行系统的综述。因此,本研究旨在调查 LULC 和 LST 之间的关系,主要目的是使用遥感数据综合 LULC 和 LST 之间的关系。在 2021 年 8 月 27 日至 28 日期间,从 Science Direct、Scopus、Web of Science 和 Google Scholar 等最熟悉的电子数据库中进行了广泛的文献检索。本研究纳入了重点研究 LULC 和 LST 之间关系以及 LULC 变化对 LST 影响的研究,并且使用遥感技术。此外,本系统研究选择了过去 5 年(2016 年 1 月至 2021 年 8 月)发表的论文,因为本研究侧重于最新的研究。在本系统综述中,纳入了 100 项研究进行分析。根据本研究的分析,在 13 种 LULC 类型中,建设用地的 LST 最高。此外,裸地的 LST 仅次于建设用地。另一方面,雪盖在 LULC 类型中具有最低的 LST。最后,水体的 LST 比植被覆盖低。