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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Spatial-temporal dynamics of land surface temperature in relation to fractional vegetation cover and land use/cover in the Tabriz urban area, Iran
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Spatial-temporal dynamics of land surface temperature in relation to fractional vegetation cover and land use/cover in the Tabriz urban area, Iran

机译:伊朗大不里士市区的地表温度与植被覆盖率和土地利用/覆盖率的时空动态

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摘要

Rapid changes of land use and land cover (WLC) in urban areas have become a major environmental concern due to environmental impacts, such as the reduction of green spaces and development of urban heat islands (UHI). Monitoring and management plans are required to solve this problem effectively. The Tabriz metropolitan area in Iran, selected as a case study for this research, is an example of a fast growing city. Multi-temporal images acquired by Landsat 4, 5 TM and Landsat 7 ETM+ sensors on 30 June 1989, 18 August 1998, and 2 August 2001 respectively, were corrected for radiometric and geometric errors, and processed to extract WLC classes and land surface temperature (LST). The relationship between temporal dynamics of LST and LULC was then examined. The temperature vegetation index (TVX) space was constructed in order to study the temporal variability of thermal data and vegetation cover. Temporal trajectory of pixels in the TVX space showed that most changes due to urbanization were observable as the pixels migrated from the low temperature-dense vegetation condition to the high temperature-sparse vegetation condition in the TVX space. The uncertainty analysis revealed that the trajectory analysis in the TVX space involved a class-dependant noise component. This emphasized the need for multiple WLC control points in the TVX space. In addition, this research suggests that the use of multi-temporal satellite data together with the examination of changes in the TVX space is effective and useful in urban WLC change monitoring and analysis of urban surface temperature conditions as long as the uncertainty is addressed.
机译:由于环境影响,例如减少绿地和开发城市热岛(UHI),城市地区土地使用和土地覆盖(WLC)的快速变化已成为主要的环境问题。需要监视和管理计划才能有效解决此问题。被选作本研究案例研究的伊朗大不里士都会区就是一个快速发展的城市的例子。分别校正了Landsat 4、5 TM和Landsat 7 ETM +传感器分别于1989年6月30日,1998年8月18日和2001年8月2日获得的多时相图像的辐射和几何误差,并进行了处理,以提取WLC类和地表温度( LST)。然后检查了LST和LULC的时间动力学之间的关系。构造温度植被指数(TVX)空间是为了研究热数据和植被覆盖的时间变异性。 TVX空间中像素的时间轨迹表明,由于像素化从TVX空间中的低温密集植被条件迁移到高温稀疏植被条件,大多数城市化引起的变化都是可以观察到的。不确定性分析表明,TVX空间中的轨迹分析涉及与类相关的噪声分量。这强调了在TVX空间中需要多个WLC控制点。此外,这项研究表明,只要解决了不确定性问题,多时相卫星数据的使用以及TVX空间变化的检查对于城市WLC变化监测和城市表面温度条件的分析是有效的。

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