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Performance of natural, exhaust, demand controlled exhaust and heat recovery residential ventilation systems as prescribed by the standards in 5 European countries

机译:按照欧洲5个国家的标准规定的自然,排气,需求控制的排气和热回收住宅通风系统的性能

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摘要

Over the last decades, residential ventilation standards have been integrated in most of the buildings codes of European countries. Contrarily to the consolidation effort in the development of the nonresidential ventilation standard EN 13779, most of the residential ventilation standards have been drafted in a prescriptive way, with disparate sizing prescriptions in the different countries. Due to these differences in ventilation requirements, the reference levels for ventilation heat loss and associated indoor air quality is different in each country. The energy saving potential for demand controlled systems is therefore different in each country as well. In this paper, the performance of natural, exhaust and mechanical residential ventilation as prescribed by the standards of 5 European countries with moderate climate is assessed with regard to perceived air quality and odour spread as well as heating season integrated ventilation heat loss using multi zone simulations with local climate data. These results are then used to calculate the energy saving potential of a demand controlled exhaust ventilation system based taking into account the trade-off between indoor air quality and heat loss. With results showing that about 50% of ventilation heat loss reductions can be achieved at equivalent indoor air quality levels, we conclude that demand controlled exhaust ventilation has a good potential for reduction of building energy use in moderate climates.
机译:在过去的几十年中,欧洲国家的大多数建筑法规都已纳入了住宅通风标准。与制定非住宅通风标准EN 13779的整合工作相反,大多数住宅通风标准都是以规定性的方式起草的,在不同国家/地区使用不同的尺寸处方。由于通风要求的这些差异,每个国家的通风热损失和相关室内空气质量的参考水平都不同。因此,需求控制系统在每个国家的节能潜力也不同。在本文中,使用多区域模拟评估了欧洲5个气候温和国家的标准规定的自然,排气和机械住宅通风的性能,以评估感知的空气质量和气味传播以及供暖季节综合通风的热损失与当地的气候数据。然后,基于室内空气质量和热量损失之间的折衷,将这些结果用于计算按需控制的排气通风系统的节能潜力。结果表明,在同等的室内空气质量水平下,可实现约50%的通风热损失减少,我们得出结论,在中等气候下,按需控制的排气通风具有减少建筑能耗的良好潜力。

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