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Efficacy of Intermittent Ventilation for Providing Acceptable Indoor Air Quality

机译:间歇通气提供可接受的室内空气质量的功效

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Ventilation standards and guidelines typically treat ventilation as a constant and specify its value. In many circumstances, a designer wishes to use intermittent ventilation rather than constant ventilation, but there are no easy equivalencies available. This paper develops a model of efficacy that can determine how much intermittent ventilation is needed to get the same indoor air quality (IAQ) as the continuous value specified. This paper describes a simple relationship between three dimensionless quantities: the temporal ventilation effectiveness—which will be called the efficacy—the nominal turnover, and the underventilation fraction. This relationship allows the calculation of intermittent ventilation for a wide variety of parameters and conditions. The relationship can be used to define a critical time that separates the regime in which ventilation variations can be averaged from the regime in which variable ventilation is of low effectiveness. The paper shows that ventilation load-shifting, temporary protection against poor outdoor air quality, and dynamic ventilation strategies can be quite effective in low-density buildings such as single-family houses or office spaces. The results of this work enable ventilation standards and guidelines to allow this extra flexibility and still provide acceptable indoor air quality.
机译:通风标准和指南通常将通风视为一个常数并指定其值。在许多情况下,设计人员希望使用间歇通风而不是恒定通风,但是没有简单的等效方法可用。本文开发了一种功效模型,该模型可以确定要获得与指定连续值相同的室内空气质量(IAQ),需要多少间歇通风。本文描述了三个无量纲量之间的简单关系:临时通风效率(称为效率)标称周转率和通风不足分数。这种关系允许针对各种参数和条件计算间歇通风。该关系可以用来定义临界时间,该临界时间将可以平均通风变化的方案与可变通风效率低的方案分开。本文表明,在低密度建筑物(如单户住宅或办公室空间)中,转移通风负荷,临时保护室外空气质量,以及动态通风策略是非常有效的。这项工作的结果使通风标准和准则得以实现,从而具有更大的灵活性,同时仍提供可接受的室内空气质量。

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