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首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >SPATIOTEMPORAL ANALYSIS OF THE URBAN COOLING ISLAND (UCI) EFFECT OF WATER SPACES IN A HIGHLY URBANIZED CITY: A CASE STUDY OF ILOILO RIVER AND ADJACENT WETLANDS
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SPATIOTEMPORAL ANALYSIS OF THE URBAN COOLING ISLAND (UCI) EFFECT OF WATER SPACES IN A HIGHLY URBANIZED CITY: A CASE STUDY OF ILOILO RIVER AND ADJACENT WETLANDS

机译:城市冷却岛(UCI)水分空间对高层城市水域的影响:以iloilo河和邻近湿地为例

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Iloilo City, a highly urbanized city in the Philippines, experiences intensified climate change impacts due to the Urban Heat Island (UHI) phenomenon, one of which is the significant increase in temperature. To mitigate UHI, recent studies investigated the cooling effect of water bodies due to its higher rate of evapotranspiration compared to green spaces. This study aims to spatiotemporally assess the Urban Cooling Island (UCI) effect of Iloilo River and adjacent wetlands on the surrounding microclimate using geospatial techniques. Landsat images were processed to generate land surface temperature (LST) and land cover layers of the study area for the years 1994, 1998, 2003, 2005, 2013, 2016, and 2019. UCI Scale (influence range of the cooling effect), Temperature Difference (difference in temperature between water space and the area within the UCI scale), and UCI Intensity (temperature gradient within the UCI scale) were calculated using multiple-ring buffers with 50-m interval to quantify variations in cooling effect of the water space at distinct surrounding regions over a long time period. Results of the study show that wetland area has a weak negative relationship with the UCI indices which could mean that cooling effect is not solely dependent on wetland size, while moderate to very strong negative correlations were calculated between temperature difference and precipitation (r = −0.48 to −0.82). Furthermore, rapid expansion of built-up areas at different sections along the river have resulted to reduced UCI scale (r = −0.37 to −0.75) and stronger cooling intensity (r = 0.55 to 0.84).
机译:菲律宾一座高层城市化的城市伊洛伊罗市,经历增强的气候变化因城市热岛(UHI)现象而产生的影响,其中一个是温度显着增加。为了减轻UHI,最近的研究通过与绿色空间相比,对水体的冷却效果调查了水体的冷却效应。本研究旨在使用地理空间技术对伊洛伊洛河和邻近微气密的城市冷却岛(UCI)效应的时尚评估。加工Landsat图像以产生1994年,1998年,2003年,2005,2013,2016和2019年研究区域的土地表面温度(LST)和陆地覆盖层。UCI秤(冷却效果的影响范围),温度使用具有50米间隔的多环缓冲器来计算差异(水位间隔和UCI刻度内的区域内的区域内的区域和UCI刻度内的区域)和UCI强度(UCI尺度内的温度梯度)进行计算,以量化水空间的冷却效果的变化在很长一段时间内的不同周边地区。该研究结果表明,湿地区域与UCI指数具有薄弱的负面关系,这意味着冷却效果并不完全取决于湿地大小,而温度差和降水之间的中度至非常强的负相关性(R = -0.48到-0.82)。此外,沿着河流不同部分的内置区域的快速膨胀导致UCI秤(R = -0.37至-0.75)和更强的冷却强度(r = 0.55至0.84)。

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