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Key Parameters for Urban Heat Island Assessment in A Mediterranean Context: A Sensitivity Analysis Using the Urban Weather Generator Model

机译:地中海背景下城市热岛评估的关键参数:使用城市天气发电机模型的敏感性分析

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摘要

Although Urban Heat Island (UHI) is a fundamental effect modifying the urban climate, being widely studied, the relative weight of the parameters involved in its generation is still not clear. This paper investigates the hierarchy of importance of eight parameters responsible for UHI intensity in the Mediterranean context. Sensitivity analyses have been carried out using the Urban Weather Generator model, considering the range of variability of: i) city radius, 2) urban morphology, 3) tree coverage, 4) anthropogenic heat from vehicles, 5) building's cooling set point, 6) heat released to canyon from HVAC systems, 7) wall construction properties and 8) albedo of vertical and horizontal surfaces. Results show a clear hierarchy of significance among the considered parameters; the urban morphology is the most important variable, causing a relative change up to 120% of the annual average UHI intensity in the Mediterranean context. The impact of anthropogenic sources of heat such as cooling systems and vehicles is also significant. These results suggest that urban morphology parameters can be used as descriptors of the climatic performance of different urban areas, easing the work of urban planners and designers in understanding a complex physical phenomenon, such as the UHI.
机译:虽然城市热岛(UHI)是一种对城市气候的根本效果,但被广泛研究,所涉及的参数的相对重量仍未清楚。本文调查了在地中海环境中负责uhi强度负责的八个参数的重要性。敏感性分析已经使用城市天气发电机模型进行,考虑到的可变性范围:i)城市半径,2)城市形态,3)树覆盖,4)从车辆的人为热量,5)建筑的冷却设定点,6 )从HVAC系统,7)壁构造特性和8)垂直和水平表面的壁施工特性和8)的热量。结果显示了考虑参数中明确的具有重要意义的层次结构;城市形态是最重要的变量,导致地中海环境年平均UHI强度的相对变化高达120%。人为的热量源如冷却系统和车辆的影响也是显着的。这些结果表明,城市形态参数可用作不同城市地区气候性能的描述符,缓解城市规划者和设计师的工作,了解尺寸的复杂物理现象,如uhi。

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