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Synergetic interaction between spatial land cover dynamics and expanding urban heat islands

机译:空间覆盖动态与扩大城市热岛之间的协同互动

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摘要

Inherent statistics of the surface temperature pattern were used to categorize urban heat islands (UHIs) for a tropical mega city and its satellite towns. Application of flexible threshold values for UHI zoning made this procedure independent of seasonal or locational influences. UHI zones for the years 1999, 2009, and 2019 were mapped from Landsat thermal bands by applying the mono-window algorithm. The parameters affecting the UHI intensity were rigorously investigated. Dynamics of land use land cover patterns provided in-depth insight into the spatiotemporal variability of UHI. The abrupt rises in localized surface temperature for every decade were recognized and thoroughly explained with the fall in fractional vegetation cover index and increase in normalized difference impervious surface index. The temporal nature of urban agglomeration and fragmentation of vegetation cover was quantified through landscape metric algorithms. The vegetation pattern and associated surface temperature fall were further used to evaluate the weakening of UHI intensity around major recreational zones. Substantial cooling by 0.938 degrees C was noted on daytime, from urban built-up at a 50-m distance to the green parks. Differential rates of urbanization and associated magnification of UHIs were looked into separately for central urban and satellite town areas. The characteristics of built-up density and proximity to green areas were employed to strategize mitigatory measures for the constantly growing UHI problem. Urgent needs for sustainable policies and green landscaping were highlighted through multi-criterion analysis.
机译:表面温度模式的固有统计数据用于将城市热群(UHIS)分类为热带百万城市及其卫星城镇。灵活阈值对UHI分区的应用使得该程序与季节性或位置影响无关。通过应用单窗算法,1999年1999年,2009年和2019年的UHI区由Landsat热带映射。影响影响UHI强度的参数严格研究。土地利用陆地覆盖图案的动态深入了解UHI的时空变异性。局部表面温度的突然升高,每年的落下并彻底解释,落在分数植被覆盖指数和归一化差异不透水表面指数增加。通过横向度量算法量化城市凝聚和植被覆盖碎片的时间性。植被图案和相关表面温度下降还用于评估主要休闲区的UHI强度的弱化。在白天上注意到0.938摄氏度的大量冷却,从城市建于50米到绿色公园。对于中央城市和卫星城区,分别研究了UHIS的差分城市化和相关放大倍数。采用了建筑密度和近距离绿色地区的特点来制定不断增长的UHI问题的缓解措施。通过多标准分析突出了可持续政策和绿化景观的迫切需求。

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