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Impact of ventilation and filtration strategies on energy consumption and exposures in retail stores

机译:通风和过滤策略对零售商店能耗和暴露的影响

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摘要

Different ventilation strategies can have an enormous impact on both exposures to contaminants of concern (COCs) and energy use in retail buildings. We applied a multi-contaminant model of an area normalized retail store, and developed estimates for distributions of model inputs. We then used these distributions in a Monte Carlo simulation for six cities to compare the impacts of the ASHRAE 62.1-2013 ventilation rate procedure (VRP), demand controlled ventilation (DCV), and indoor air quality procedure (IAQP), with or without using a high particulate efficiency filter. Results showed that for cities where outdoor PM2.5 concentration is low, adopting the IAQP with low efficiency PM2.5 filter in grocery stores and the VRP with high PM2.5 efficiency in non-grocery stores yielded the greatest exposure benefits. For cities with high outdoor PM2.5 concentration, adopting the VRP with high PM2.5 efficiency for all store types yielded the greatest exposure benefits. However, these exposure benefits also caused an increase in energy consumption, and the magnitude depends on the city's climate, outdoor PM2.5 concentration and the retail store type. We propose a new pollutant exposure control ventilation (PECV) strategy, where ventilation rates are weighed against exposure to different COCs, and the ventilation rate that is most climatically advantageous is chosen. (C) 2016 Elsevier Ltd. All rights reserved.
机译:不同的通风策略可能对零售建筑物中所关注的污染物(COC)暴露和能源使用产生巨大影响。我们应用了区域标准化零售商店的多污染物模型,并开发了模型输入分布的估计。然后,我们在六个城市的蒙特卡洛模拟中使用这些分布,比较了使用或不使用ASHRAE 62.1-2013通风率程序(VRP),需求控制通风(DCV)和室内空气质量程序(IAQP)的影响高颗粒效率的过滤器。结果表明,对于室外PM2.5浓度较低的城市,杂货店采用低效率PM2.5过滤器的IAQP,非杂货店采用高PM2.5效率的VRP可获得最大的暴露效益。对于室外PM2.5浓度较高的城市,所有商店类型都采用PM2.5效率高的VRP可获得最大的暴露效益。但是,这些暴露的好处也导致能源消耗的增加,其程度取决于城市的气候,室外PM2.5浓度和零售商店类型。我们提出了一种新的污染物暴露控制通风(PECV)策略,其中权衡通风速率与不同COC的暴露量,并选择对气候最有利的通风速率。 (C)2016 Elsevier Ltd.保留所有权利。

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