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Effect of Land Cover Fractions on Changes in Surface Urban Heat Islands Using Landsat Time-Series Images

机译:利用Landsat时间序列图像的土地覆盖率对城市地表热岛变化的影响

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摘要

Man-made materials now cover a dominant proportion of urban areas, and such conditions not only change the absorption of solar radiation, but also the allocation of the solar radiation and cause the surface urban heat island effect, which is considered a serious problem associated with the deterioration of urban environments. Although numerous studies have been performed on surface urban heat islands, only a few have focused on the effect of land cover changes on surface urban heat islands over a long time period. Using six Landsat image scenes of the Metropolitan Development Area of Wuhan, our experiment (1) applied a mapping method for normalized land surface temperatures with three land cover fractions, which were impervious surfaces, non-chlorophyllous vegetation and soil and vegetation fractions, and (2) performed a fitting analysis of fierce change areas in the surface urban heat island intensity based on a time trajectory. Thematic thermal maps were drawn to analyze the distribution of and variations in the surface urban heat island in the study area. A Multiple Endmember Spectral Mixture Analysis was used to extract the land cover fraction information. Then, six ternary triangle contour graphics were drawn based on the land surface temperature and land cover fraction information. A time trajectory was created to summarize the changing characteristics of the surface urban heat island intensity. A fitting analysis was conducted for areas showing fierce changes in the urban heat intensity. Our results revealed that impervious surfaces had the largest impacts on surface urban heat island intensity, followed by the non-chlorophyllous vegetation and soil fraction. Moreover, the results indicated that the vegetation fraction can alleviate the occurrence of surface urban heat islands. These results reveal the impact of the land cover fractions on surface urban heat islands. Urban expansion generates impervious artificial objects that replace pervious natural objects, which causes an increase in land surface temperature and results in a surface urban heat island.
机译:现在,人造材料覆盖了城市地区的主要部分,这种条件不仅改变了太阳辐射的吸收,而且改变了太阳辐射的分配并引起了城市表面热岛效应,这被认为是与之相关的严重问题。城市环境的恶化。尽管已经对地表城市热岛进行了大量研究,但只有少数研究集中在长期内土地覆盖变化对地表城市热岛的影响。我们的实验(1)使用武汉都市开发区的6个Landsat影像场景,对具有三个土地覆盖率的归一化地表温度应用了一种映射方法,这三个地表覆盖率是不透水的表面,非叶绿素植被以及土壤和植被的比例,并且( 2)根据时间轨迹对地表城市热岛强度的剧烈变化区域进行了拟合分析。绘制了专题热图,以分析研究区域中地表城市热岛的分布和变化。使用多端元光谱混合分析来提取土地覆被分数信息。然后,根据地表温度和地表覆盖率信息绘制了六个三元三角形轮廓图。建立了一个时间轨迹以总结城市地表热岛强度的变化特征。对显示城市热强度剧烈变化的区域进行了拟合分析。我们的结果表明,不透水表面对城市热岛强度的影响最大,其次是非叶绿素植被和土壤分数。此外,结果表明,植被比例可以减轻地表城市热岛的发生。这些结果揭示了土地覆盖率对地表城市热岛的影响。城市扩张会产生不透水的人造物体,这些物体会取代透水的自然物体,从而导致土地表面温度升高,并导致城市表面热岛。

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