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A New Method to Assess Fine-Scale Outdoor Thermal Comfort for Urban Agglomerations

机译:一种评估城市凝聚的细尺室外热舒适度的新方法

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摘要

In urban areas, high air temperatures and heat stress levels greatly affect human thermal comfort and public health, with climate change further increasing the mortality risks. This study presents a high resolution (100 m) modelling method, including detailed offline radiation calculations, that is able to efficiently calculate outdoor heat stress for entire urban agglomerations for a time period spanning several months. A dedicated measurement campaign was set up to evaluate model performance, yielding satisfactory results. As an example, the modelling tool was used to assess the effectiveness of green areas and water surfaces to cool air temperatures and wet bulb globe temperatures during a typical hot day in the city of Ghent (Belgium), since the use of vegetation and water bodies are shown to be promising in mitigating the adverse effects of urban heat islands and improving thermal comfort. The results show that air temperature reduction is most profound over water surfaces during the afternoon, while open rural areas are coolest during the night. Radiation shading from trees, and to a lesser extent, from buildings, is found to be most effective in reducing wet bulb globe temperatures and improving thermal comfort during the warmest moments of the day.
机译:在城市地区,高空气温度和热胁迫水平极大地影响人类热舒适和公共卫生,气候变化进一步提高了死亡率风险。本研究提出了高分辨率(100米)的建模方法,包括详细的离线辐射计算,能够有效地计算整个城市附近的室外热应力,跨越几个月的时间段。设立专用的测量活动以评估模型性能,产生满意的结果。作为一个例子,建模工具用于评估绿色区域和水面的有效性,以便在根特(比利时)的典型炎热日内冷却空气温度和湿灯泡全球温度,因为使用植被和水体被证明是有希望减轻城市热岛的不利影响,提高热舒适性。结果表明,在下午的水面上,空气温度降低最深刻,而开放的农村地区在夜间最酷。从树木和较小程度来看,来自建筑物的辐射遮蔽是最有效地减少湿灯泡地球温度并在当天最温暖的时刻提高热舒适度。

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