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Using a ventilation controller to optimise residential passive ventilation for energy and indoor air quality

机译:使用通风控制器来优化住宅被动通风以提高能源和室内空气质量

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摘要

One way to reduce the energy impact or providing residential ventilation is to use passive and hybrid systems. However, these passive and hybrid (sometimes called mixed-mode) systems must still meet chronic and acute health standards for ventilation. This study uses a computer simulation approach to examine the energy and indoor air quality (IAQ) implications of passive and hybrid ventilation systems, in 16 California climate zones. Both uncontrolled and flow controlled passive stacks are assessed. A new hybrid ventilation system is outlined that uses an intelligent ventilation controller to minimise energy use, while ensuring chronic and acute IAQ standards are met ASHRAE Standard 62.2-2010 - the United States standard for residential ventilation - is used as the chronic standard, and exposure limits for PM2.5, formaldehyde and NO_2 are used as the acute standards. The results show that controlled passive ventilation and hybrid ventilation can be used in homes to provide equivalent IAQ. to continuous mechanical ventilation, for less use of energy. On average, the controlled passive system saved 6% of ventilation-related energy compared to the mechanical system, while the hybrid system saved 24%. We also show that passive systems benefit greatly from maximum flow controllers that limit over-ventilation, and we provide guidance on the appropriate sizing of passive stacks.
机译:减少能源影响或提供住宅通风的一种方法是使用被动和混合系统。但是,这些被动和混合(有时称为混合模式)系统仍必须满足通风的慢性和急性健康标准。这项研究使用计算机模拟方法来检查加州16个气候区的被动和混合通风系统对能源和室内空气质量(IAQ)的影响。评估了不受控制的和受流量控制的无源堆栈。概述了一种新的混合通风系统,该系统使用智能通风控制器来最大程度地减少能源消耗,同时确保满足慢性和急性IAQ标准。ASHRAE标准62.2-2010(美国住宅通风标准)被用作慢性标准,暴露极限浓度为PM2.5,甲醛和NO_2。结果表明,可控的被动通风和混合通风可用于家庭,以提供等效的室内空气质量。进行连续机械通风,以减少能源消耗。与机械系统相比,受控被动系统平均可节省6%的通风相关能源,而混合动力系统可节省24%。我们还表明,无源系统受益于最大流量控制器,该控制器可限制过度通风,并为无源堆栈的适当尺寸提供指导。

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