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Modeling the Heat Island Intensity (HII) Based on Distance Diffusion and Typical Ground Feature Types in Beijing Downtown

机译:基于距离扩散和典型市区特征类型的北京热岛强度模型

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Understanding the spatiotemporal evolution and the causes of the formation of urban heat island (UHI) is of great significance to ease the urban thermal environment and improve the comfortability for human settlement. The land surface temperature (LST) of Beijing downtown is retrieved based on Landsat thermal infrared images, and the LST is graded to obtain multi-grade heat island intensity (HII) for analyzing the evolution law and spatial pattern of UHI. The Beijing downtown was divided into 30 ring buffers, and the proportion of ground feature types and the information on HII in each ring buffer was analyzed. Also, the relationship between the influence factor and the HII is established based on the statistical data onto each ground feature type and the distance from the downtown. The results showed that the overall HII is increasing every year in Beijing downtown. The impervious surface has a great impact on the HII, the strength of HII becomes greater with the growth of impervious surface percentage (ISP). The strength of HII decreases gradually with the increasing distance from the center of the city.
机译:了解城市时空演化及其形成原因对缓解城市热环境,提高人类居住舒适度具有重要意义。利用Landsat红外热像反演北京市区的地表温度(LST),对LST进行分级,得到多级热岛强度(HII),以分析超高热的演变规律和空间格局。将北京市区分为30个环形缓冲区,分析每个环形缓冲区中地面特征类型的比例和有关HII的信息。同样,根据每个地面要素类型上的统计数据以及距市区的距离,建立影响因子和HII之间的关系。结果表明,北京市区的总体HII每年都在增加。防渗表面对HII的影响很大,HII的强度随着防渗表面百分比(ISP)的增加而变大。 HII的强度随着距市中心的距离的增加而逐渐减小。

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