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A MODIS/ASTER Airborne Simulator (MASTER) Imagery for Urban Heat Island Research

机译:用于城市热岛研究的mODIs / asTER机载模拟器(masTER)图像

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摘要

abstract: Thermal imagery is widely used to quantify land surface temperatures to monitor the spatial extent and thermal intensity of the urban heat island (UHI) effect. Previous research has applied Landsat images, Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images, Moderate Resolution Imaging Spectroradiometer (MODIS) images, and other coarse- to medium-resolution remotely sensed imagery to estimate surface temperature. These data are frequently correlated with vegetation, impervious surfaces, and temperature to quantify the drivers of the UHI effect. Because of the coarse- to medium-resolution of the thermal imagery, researchers are unable to correlate these temperature data with the more generally available high-resolution land cover classification, which are derived from high-resolution multispectral imagery. The development of advanced thermal sensors with very high-resolution thermal imagery such as the MODIS/ASTER airborne simulator (MASTER) has investigators quantifying the relationship between detailed land cover and land surface temperature. While this is an obvious next step, the published literature, i.e., the MASTER data, are often used to discriminate burned areas, assess fire severity, and classify urban land cover. Considerably less attention is given to use MASTER data in the UHI research. We demonstrate here that MASTER data in combination with high-resolution multispectral data has made it possible to monitor and model the relationship between temperature and detailed land cover such as building rooftops, residential street pavements, and parcel-based landscaping. Here, we report on data sources to conduct this type of UHI research and endeavor to intrigue researchers and scientists such that high-resolution airborne thermal imagery is used to further explore the UHI effect.
机译:摘要:热图像被广泛用于量化地表温度,以监测城市热岛效应的空间范围和热强度。先前的研究已使用Landsat图像,高级星载热发射和反射辐射计(ASTER)图像,中分辨率成像光谱仪(MODIS)图像以及其他中低分辨率遥感图像来估计表面温度。这些数据通常与植被,不透水的表面和温度相关,以量化UHI效应的驱动力。由于热图像的分辨率从中等到中等,研究人员无法将这些温度数据与更高分辨率的高分辨率土地覆被分类相关联,后者是从高分辨率多光谱图像获得的。具有高分辨率红外图像的先进热传感器的开发,例如MODIS / ASTER机载模拟器(MASTER),已经使研究人员量化了详细的土地覆盖率与地表温度之间的关系。尽管这显然是下一步,但通常使用已发表的文献(即MASTER数据)来区分燃烧区域,评估火灾严重性并对城市土地覆盖进行分类。在UHI研究中使用MASTER数据的关注度大大降低。我们在此证明,MASTER数据与高分辨率多光谱数据相结合,使监视和建模温度与详细的土地覆盖物(如建筑物屋顶,住宅街道和铺装景观)之间的关系成为可能。在这里,我们报告了进行此类UHI研究的数据源,并致力于引起研究人员和科学家的兴趣,以便使用高分辨率的航空热像仪进一步探索UHI的影响。

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