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Effect of ventilation strategies on residential ozone levels

机译:通风策略对居民臭氧水平的影响

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Elevated outdoor ozone levels are associated with adverse health effects. Because people spend the vast majority of their time indoors, reduction in indoor levels of ozone of outdoor origin would lower population exposures and might also lead to a reduction in ozone-associated adverse health effects. In most buildings, indoor ozone levels are diminished with respect to outdoor levels to an extent that depends on surface reactions and on the degree to which ozone penetrates the building envelope. Ozone enters buildings from outdoors together with the airflows that are driven by natural and mechanical means, including deliberate ventilation used to reduce concentrations of indoor-generated pollutants. When assessing the effect of deliberate ventilation on occupant health one should consider not only the positive effects on removing pollutants of indoor origin but also the possibility that enhanced ventilation might increase indoor levels of pollutants originating outdoors. This study considers how changes in residential ventilation that are designed to comply with ASHRAE Standard 62.2 might influence indoor levels of ozone. Simulation results show that the building envelope can contribute significantly to filtration of ozone. Consequently, the use of exhaust ventilation systems is predicted to produce lower indoor ozone concentrations than would occur with balanced ventilation systems operating at the same air-exchange rate. We also investigated a strategy for reducing exposure to ozone that would deliberately reduce ventilation rates during times of high outdoor ozone concentration while still meeting daily average ventilation requirements.
机译:室外臭氧水平升高会给健康带来不利影响。由于人们将大部分时间都花在室内,因此减少室内室外源性臭氧的水平将降低人群的暴露程度,并可能减少与臭氧相关的不良健康影响。在大多数建筑物中,室内臭氧水平相对于室外水平有所降低,其程度取决于表面反应以及臭氧渗透建筑物围护结构的程度。臭氧与空气一起从室外进入建筑物,这些空气由自然和机械手段驱动,包括用于降低室内产生的污染物浓度的有意通风。在评估有意通风对乘员健康的影响时,不仅应考虑对消除室内污染物的积极影响,而且还应考虑加强通风可能增加室内源自室外污染物的水平的可能性。这项研究考虑了旨在符合ASHRAE标准62.2的住宅通风变化如何影响室内臭氧水平。仿真结果表明,建筑物围护结构可以显着促进臭氧的过滤。因此,预计使用排气通风系统所产生的室内臭氧浓度要低于在相同空气交换率下运行的平衡通风系统所产生的臭氧浓度。我们还研究了一种减少臭氧暴露的策略,该策略可以在室外臭氧浓度高的时候有意降低通风率,同时仍然满足每日平均通风要求。

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