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首页> 外文期刊>Indoor Air >Inter-zonal airflow in multi-unit residential buildings: A review of the magnitude and interaction of driving forces, measurement techniques and magnitudes, and its impact on building performance
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Inter-zonal airflow in multi-unit residential buildings: A review of the magnitude and interaction of driving forces, measurement techniques and magnitudes, and its impact on building performance

机译:多单位住宅建筑中的区域间气流:审查驱动力,测量技术和大幅度的幅度和相互作用及其对建筑性能的影响

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摘要

Inter-zonal airflows within multi-unit residential buildings (MURBs) have profound impacts on an array of building performance metrics, including energy, indoor air quality (IAQ), fire and acoustical separations, and distribution of ventilation air.Although there are wide-ranging implications, most building codes/standards have yet to incorporate airtightness requirements for interior partitions in large, multi-zone structures, and instead focus primarily on exterior envelope airtightness. Despite the multi-disciplinary nature of the topic, previous reviews have been limited to one domain (eg, energy performance, IAQ, specific test methods). This paper presents a comprehensive summary of the literature on inter-zonal airflow in MURBs including the magnitude and interaction of driving forces; its relevance to/effect on building performance; current code requirements; testing methods; and previous measurements.While considerable efforts have been made in recent years to quantify and control inter-zonal airflows, most measurement techniques are still labor-intensive and disruptive, and there is no framework for how to implement performance-based requirements into building codes and standards. Further research efforts should be focused on refining testing methods and preparing the construction industry for code changes.
机译:多单位住宅建筑物(MURBS)内的区域间气流对建筑物绩效指标的阵列产生了深远的影响,包括能量,室内空气质量(IAQ),火灾和声学分离,以及通风空气的分配。虽然有广泛的影响,但大多数建筑码/标准尚未将内部隔板的气密要求纳入大型多区域结构中的内部隔板,而是主要集中在外部信封气密性上。尽管主题的多学科性质,以前的评论仅限于一个域(例如,能量性能,IAQ,特定的测试方法)。本文介绍了文献中的文献综述,包括杂交间气流,包括驱动力的幅度和相互作用;其与建筑业绩的/效应的相关性;当前代码要求;测试方法;和以前的测量。近年来,近年来取得了相当大的努力,以量化和控制间间气流,但大多数测量技术仍然是劳动密集型和破坏性的,并且没有如何将基于绩效的要求实施到建筑规范和标准中的框架。进一步的研究努力应专注于精炼测试方法,并准备建筑行业进行代码更改。

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