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Urbanization effect on spatiotemporal thermal patterns and changes in Hangzhou (China)

机译:城市化对时空热格局及其变化的影响(中国杭州)

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摘要

Urban heat island (UHI) shows thermal intensification in urban areas compared to surrounding areas. Land surface temperature (LST) has been widely applied in assessing UHI. However, due to limitations of the LST retrieval method, few researchers attempted to track the long-term dynamics of UHI and their responses to progressive urbanization process based on Landsat series data. In this study, we improved the retrieval method to extract the average UHI intensity of Hangzhou city core in 1990-2010, and explored the dynamics of UHI composition and configuration in response to urbanization. Google Earth Engine (GEE) was applied to calculate the average UHI intensity in the study area. Hangzhou city core was heating up in study period with extensive conversions from neutral and cool area to heated area. The expansion of heated area initially radiated from the original urban core in linear configuration, and subsequently expanded to infill areas away from the core by replacing neutral and cool area. The significant differences in average UHI intensity between different land use and land cover (LULC) types can be observed: urban land had the highest value whereas forest and water body registered the lowest. The expansion of urban land at the expense of natural land had exceeded a threshold to induce spillover of heat energy from the former to the latter. The findings can inform nature-based solutions to optimize the thermal environment and livability of fast-growing subtropical cities.
机译:与周围地区相比,城市热岛(UHI)显示了城市地区的热强化。地表温度(LST)已广泛用于评估UHI。然而,由于LST检索方法的局限性,很少有研究者试图根据Landsat系列数据来追踪UHI的长期动态及其对城市化进程的反应。在这项研究中,我们改进了检索方法,以提取1990-2010年杭州市中心的平均UHI强度,并探索了UHI的组成和配置动态响应城市化。 Google Earth Engine(GEE)用于计算研究区域的平均UHI强度。在研究期间,杭州城市核心层逐渐升温,从中性和凉爽区向热区转变。加热区域的扩展最初以线性配置从原始城市核心辐射出来,然后通过替换中性和凉爽区域扩展到远离核心的填充区域。可以观察到不同土地利用和土地覆被类型之间的平均UHI强度存在显着差异:城市土地的价值最高,而森林和水体的最低。以自然土地为代价的城市土地扩张已经超过了引发热能从前者向后者溢出的门槛。这些发现可以为基于自然的解决方案提供参考,以优化快速增长的亚热带城市的热环境和宜居性。

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