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Natural ventilation systems to enhance sustainability in buildings: a review towards zero energy buildings in schools

机译:自然通风系统,以提高建筑物的可持续性:对学校零能量建筑进行综述

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摘要

European regulations set the condition of Zero Energy Buildings for new buildings since 2020, with an intermediate milestone in 2018 for public buildings, in order to control greenhouse gases emissions control and climate change mitigation. Given that main fraction of energy consumption in buildings operation is due to HVAC systems, advances in its design and operation conditions are required. One key element for energy demand control is passive design of buildings. On this purpose, different recent studies and publications analyse natural ventilation systems potential to provide indoor air quality and comfort conditions minimizing electric power consumption. In these passive systems are of special relevance their capacities as passive cooling systems as well as air renovation systems, especially in high-density occupied spaces. With adequate designs, in warm/mild climates natural ventilation systems can be used along the whole year, maintaining indoor air quality and comfort conditions with small support of other heating/cooling systems. In this paper is analysed the state of the art of natural ventilation systems applied to high density occupied spaces with special focus on school buildings. The paper shows the potential and applicability of these systems for energy savings and discusses main criteria for their adequate integration in school building designs.
机译:欧洲法规自2020年以来为新建筑的零能量建筑条件设定了2018年为公共建筑的中级里程碑,以控制温室气体排放控制和气候变化缓解。鉴于建筑物操作中的能量消耗的主要分数是由于HVAC系统,所需的设计和操作条件的进步。能量需求控制的一个关键要素是建筑物的被动设计。在此目的,最近的最近研究和出版物分析了自然通风系统的潜力,以提供最小化电力消耗的室内空气质量和舒适条件。在这些无源系统中,它们具有作为被动冷却系统以及空气改造系统的能力,特别是在高密度占用空间中。具有足够的设计,在温暖/轻度气候中,天然通风系统可沿全年使用,维护室内空气质量和舒适条件,小支撑其他加热/冷却系统。本文分析了应用于高密度占用空间的自然通风系统领域,专注于学校建筑。本文显示了这些系统的能源节省的潜力和适用性,并探讨了他们在学校建筑设计中充分集成的主要标准。

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