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On the thermal response of buildings under the synergic effect of heat waves and urban heat island

机译:热波和城市热岛协同作用下建筑物的热响应

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Global and local climate change increases the occurrence and the magnitude of extreme phenomena, as urban heat island and heat waves. These phenomena seriously affect the quality of life in several aspects: society, health, environment; they also heavily affect the building sector, increasing the energy use for cooling and deteriorating the indoor thermal environment. This paper utilizes data from a continuous urban microclimatic monitoring over three years to quantify the impact of heat waves on the thermal quality of two reference residential buildings in the city of Rome, Italy. The synergic effect of heat waves with the urban heat island is also analysed. The observation period includes summers of 2015, 2016 and 2017. The buildings' response is analysed through numerical thermal analyses in transient regime, taking into account several variants: thermal insulation, mechanical cooling system and thermal free-floating conditions, with different night ventilation strategies. Results show that daily average temperature and urban heat island intensity increase by up to 4.3 degrees C and 1.5 degrees C respectively during the heat waves with respect to the rest of the summer. The building cooling energy use rises up 87% during heat wave periods, while average operative temperature in free-running buildings increments by up to 3.5 degrees C. Results also show the impressive combined impact of heat wave and heat island: triplication of cooling energy use in the worst case and increase of the average operative temperature above 5 degrees C.
机译:全球和当地气候变化会增加极端现象的发生和幅度,作为城市热岛和热浪。这些现象严重影响了几个方面的生活质量:社会,健康,环境;它们也严重影响建筑物,增加了冷却和降低室内热环境的能源用途。本文利用了三年内连续城市微跨门监测的数据来量化热浪对意大利罗马市两参考住宅建筑的热质质量的影响。还分析了与城市热岛热波的协同作用。观察期包括2015年,2016年和2017年的夏季。通过瞬态制度的数值热分析来分析建筑物的回应,考虑到几种变体:隔热,机械冷却系统和热自由浮动条件,具有不同的夜间通风策略。结果表明,在夏季剩余时间内,每日平均温度和城市热岛强度分别增加4.3摄氏度和1.5摄氏度。大楼冷却能量使用在热浪时段期间上升87%,而自由运行建筑的平均手术温度可增加3.5摄氏度。结果还显示了热浪和热岛的令人印象深刻的综合影响:冷却能量的三倍在最坏的情况下,平均操作温度的增加5摄氏度。

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