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Numerical analysis of passive strategies for energy retrofit of existing buildings in Mediterranean climate: thermal mass and natural ventilation combination

机译:地中海气候下现有建筑的被动式能源改造策略的数值分析:热质量和自然通风组合

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The study investigates the potential of coupling natural ventilation and thermal storage systems to improve hygrothermal comfort and reduce energy consumption during summer season in an existing building in the Mediterranean. It aims at bridging the knowledge gap between designers, researchers and building scientists, fostering a multidisciplinary approach and promoting numerical simulation of the energy performance of buildings within architectural professional practice. The study analyses the interaction between six natural ventilation systems (single sided ventilation through facade openings; cross ventilation through facade openings, inlet wind tower, thermal chimney, evaporative cool tower, earth pipes) and with two thermal storage typology (heavy and medium-light) within four strategic Italian location (Rome, Naples, Messina and Catania). For each interaction we perform a numerical dynamic simulation of indoor comfort, indoor air quality and energy consumption during the summer period, on a reference building model corresponding to the most common Italian typology. Results show that the use of the chosen systems ensures significant reductions of discomfort hours and energy consumption in all configurations. The study also highlights the high efficiency of non invasive systems (single-sided and cross ventilation with automatic control present discomfort hours reduction and energy consumption reduction above 68% for all combinations) and the significant influence of the daily thermal range value on the performance of systems without air pre-treatment.
机译:这项研究调查了在地中海现有建筑物中,将自然通风和蓄热系统相结合的潜力,以改善湿热舒适度并减少夏季的能源消耗。它旨在弥合设计师,研究人员和建筑科学家之间的知识鸿沟,培育一种多学科方法,并促进在建筑专业实践中对建筑物能源性能进行数值模拟。这项研究分析了六个自然通风系统(通过立面开口的单侧通风;通过立面开口的交叉通风,进风塔,热烟囱,蒸发式冷却塔,土管)之间的相互作用以及两种储热类型(重型和中型)之间的相互作用。 )位于意大利的四个战略要地(罗马,那不勒斯,墨西拿和卡塔尼亚)。对于每种交互,我们都会在与最常见的意大利类型学相对应的参考建筑模型上,对室内舒适度,室内空气质量和夏季能源消耗进行数值动态模拟。结果表明,所选系统的使用可确保在所有配置下均显着减少不适时间和能耗。这项研究还强调了非侵入性系统的高效率(单侧和交叉通风以及自动控制功能,使所有组合的不舒适时间减少,能耗降低了68%以上),以及每日热量范围值对空调性能的重大影响。无需空气预处理的系统。

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