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首页> 外文期刊>Climate >Integrating Urban Form, Function, and Energy Fluxes in a Heat Exposure Indicator in View of Intra-Urban Heat Island Assessment and Climate Change Adaptation
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Integrating Urban Form, Function, and Energy Fluxes in a Heat Exposure Indicator in View of Intra-Urban Heat Island Assessment and Climate Change Adaptation

机译:考虑到城市内热岛评估和气候变化适应,将城市形态,功能和能量通量整合到热暴露指标中

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Cities worldwide are getting warmer due to the combined effects of urban heat and climate change. To this end, local policy makers need to identify the most thermally vulnerable areas within cities. The Local Climate Zone (LCZ) scheme highlights local-scale variations; however, its classes, although highly valuable, are to a certain extent generalized in order to be universally applicable. High spatial resolution indicators have the potential to better reflect city-specific challenges; in this paper, the Urban Heat Exposure (UHeatEx) indicator is developed, integrating the physical processes that drive the urban heat island (UHI). In particular, the urban form is modeled using remote sensing and geographical information system (GIS) techniques, and used to estimate the canyon aspect ratio and the storage heat flux. The Bowen ratio is calculated using the aerodynamic resistance methodology and downscaled remotely sensed surface temperatures. The anthropogenic heat flux is estimated via a synergy of top–down and bottom–up inventory approaches. UHeatEx is applied to the city of Athens, Greece; it is correlated to air temperature measurements and compared to the LCZs classification. The results reveal that UHeatEx has the capacity to better reflect the strong intra-urban variability of the thermal environment in Athens, and thus can be supportive for adaptation responses. High-resolution climate projections from the EURO-CORDEX ensemble for the region show that the adverse effects of the existing thermal inequity are expected to worsen in the coming decades.
机译:由于城市热能和气候变化的共同影响,全世界的城市都在变暖。为此,地方政策制定者需要确定城市中最热脆弱的地区。本地气候区(LCZ)计划强调了本地尺度的变化;然而,它的类别虽然很有价值,但在一定程度上被概括了以便普遍适用。高空间分辨率指标有可能更好地反映特定城市的挑战;在本文中,开发了城市热暴露(UHeatEx)指标,整合了驱动城市热岛(UHI)的物理过程。特别是,使用遥感和地理信息系统(GIS)技术对城市形态进行建模,并用于估算峡谷纵横比和存储热通量。使用空气动力学阻力方法和缩小的遥感表面温度来计算鲍文比。人为热通量是通过自上而下和自下而上的库存方法的协同作用来估算的。 UHeatEx适用于希腊雅典市;它与气温测量值相关,并与LCZs分类进行比较。结果表明,UHeatEx具有更好地反映雅典热环境强烈的城市内部变化的能力,因此可以为适应反应提供支持。 EURO-CORDEX合奏对该地区的高分辨率气候预测表明,在未来几十年中,现有热不平等的不利影响预计会加剧。

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