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Numerical Assessment of Indoor Air Quality in Buildings Designed with Standard 62.1-2019 Natural Ventilation Procedure

机译:采用标准62.1-2019自然通风程序设计的建筑物室内空气质量的数值评估

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摘要

The 2019 version of ASHRAE/ANSI Standard 62.1: Ventilation for Acceptable Indoor Air Quality includes updates to the Natural Ventilation Procedure (NVP) in order to "provide a more accurate calculation methodology and also define the process for designing an engineered system. Natural ventilation now requires considering the quality of the outdoor air and interaction of the outdoor air with mechanically cooled spaces." Opening sizes prescribed in the new prescriptive compliance path are specified in a much more detailed manner than in previous versions of the standard, and a new definition of engineered natural ventilation (NV) systems is given. An informative note states that "opening sizes have not been created to address thermal comfort", assumedly meaning their prescription is for indoor air quality (IAQ) purposes only. No further explanation or justification for the opening size prescriptions is given. Since natural ventilation is a phenomenon that arises from naturally occurring and variable forces, rather than the predictable action of mechanical systems, resulting air quality in naturally ventilated buildings is less easily predicted than that in mechanically ventilated buildings (which itself is often quite challenging to predict). Furthermore, resulting IAQ in NV buildings is a function of variables not under a designer's control, including weather and transient or mobile pollutant sources. However, methods exist for assessing the validity of the prescribed opening sizes and estimate their effect on resulting IAQ, which is the subject of the current work.
机译:2019 年版的 ASHRAE/ANSI 标准 62.1:可接受室内空气质量的通风包括对自然通风程序 (NVP) 的更新,以便“提供更准确的计算方法,并定义设计工程系统的过程。自然通风现在需要考虑室外空气的质量以及室外空气与机械冷却空间的相互作用。与以前版本的标准相比,新的规范性合规路径中规定的开口尺寸被指定得更详细,并给出了工程自然通风 (NV) 系统的新定义。一份信息说明指出,“开口尺寸并不是为了解决热舒适性而创建的”,据推测,这意味着它们的处方仅用于室内空气质量 (IAQ) 目的。没有对开口尺寸处方给出进一步的解释或理由。由于自然通风是由自然发生的可变力引起的现象,而不是机械系统的可预测作用,因此自然通风建筑物的空气质量不如机械通风建筑物的空气质量容易预测(机械通风本身通常很难预测)。此外,内华达州建筑物中产生的室内空气质量是不受设计师控制的变量的函数,包括天气和瞬态或移动污染物源。然而,有一些方法可以评估规定的开口尺寸的有效性,并估计它们对由此产生的室内空气质量的影响,这是当前工作的主题。

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