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Air Distribution Effectiveness for Residential Mechanical Ventilation: Simulation and Comparison of Normalized Exposures

机译:住宅机械通风的空气分配效率:标准化暴露的模拟和比较

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Even when providing the same nominal rate of outdoor air (OA), different ventilation systems distribute air in different ways, affecting the occupants differently depending on the dwelling, on source disposition and strength, on occupants' behavior, and on the cooling or heating system. This paper will report on simulations that compare ventilation systems by assessing their impact on exposure, for each system, It will examine the potential exposure variance for ordinary occupancy patterns (as opposed to extreme or ideal cases) and the influence of source emission patterns and house geometry. These simulations take into account the unsteady, occupancy-tied aspect of ventilation such as bathroom and kitchen exhaust fans. As most US homes have central HVAC systems, the results can be used to make recommendations and adjustments for distribution and mixing to residential ventilation standards such as ASHRAE Standard 62.2. This paper will then analyze the results heeded by increasing mixing of indoor air on the occupant's exposure to contaminants, showing that increasing mixing reduces the effect of the other variables that affect exposure, and vice versa.
机译:即使提供相同的额定室外空气(OA),不同的通风系统也会以不同的方式分配空气,这取决于居住者,源的布置和强度,居住者的行为以及制冷或加热系统对居住者的影响也不同。 。本文将报告模拟结果,通过评估通风系统对暴露的影响来对通风系统进行比较,对于每个系统,它将检查普通居住模式(而不是极端或理想情况)的潜在暴露变化以及源排放模式和房屋的影响几何。这些模拟考虑了诸如浴室和厨房排风扇之类的通风不稳定,占用大的方面。由于大多数美国家庭都具有中央HVAC系统,因此可将结果用于建议和调整,以分配和混合以达到住宅通风标准,例如ASHRAE标准62.2。然后,本文将分析通过增加室内空气混合对乘员暴露于污染物所引起的后果,表明增加混合会降低影响暴露的其他变量的影响,反之亦然。

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