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住宅暖通空调过滤器的原位有效性。

In-situ effectiveness of residential HVAC filters.

机构信息

Department of Civil and Mineral Engineering, University of Toronto, Toronto, ON, Canada.

Dalla Lana School of Public Health, University of Toronto, Toronto, ON, Canada.

出版信息

Indoor Air. 2020 Jan;30(1):156-166. doi: 10.1111/ina.12617. Epub 2019 Nov 19.

Abstract

In this study, we explore different filter and contextual characteristics that influence effectiveness of high-efficiency filters in 21 residences in Toronto, Canada. The in situ effectiveness was assessed with decay tests at the beginning and the end of filter life with four different filters (MERV 8-14 from ASHRAE Standard 52.2) installed in operational HVAC systems, compared with either the system off or with no filter installed. There was considerable difference between median PM effectiveness of the non-electret filters when compared to electret filters (16% vs. 36%) of the same nominal efficiency (MERV 8). However, median PM effectiveness of electret filters only slightly improved (between 5% and 9% absolute increase) as MERV increased from 8 to 14. There was more variation in filter effectiveness between the same filter in different homes than there was between different filters in the same home. Variations in filter performance arose because home-specific particle loss rates (eg, ventilation rate) vary greatly in different buildings. The higher the loss rates due to non-filter factors, the lower the effectiveness of a filter. Given the relatively large variation in effectiveness for a given filter over time and in different homes, increasing system runtime may be a productive way to improve filter performance in many homes.

摘要

在这项研究中,我们探讨了不同的过滤和环境特性,这些特性会影响加拿大多伦多 21 处住宅中高效过滤器的有效性。通过在过滤器使用寿命开始和结束时进行衰减测试,评估了现场效率,测试中在运行的 HVAC 系统中安装了四种不同的过滤器(ASHRAE 标准 52.2 规定的 MERV 8-14),并与系统关闭或未安装过滤器的情况进行了比较。与具有相同标称效率(MERV 8)的非驻极体过滤器相比,相同标称效率(MERV 8)的驻极体过滤器的 PM 平均有效率(16%对 36%)存在相当大的差异。然而,随着 MERV 从 8 增加到 14,驻极体过滤器的 PM 有效率仅略有提高(绝对增加 5%至 9%)。同一过滤器在不同住宅之间的过滤效率差异大于同一住宅中不同过滤器之间的差异。过滤器性能的变化是由于特定于家庭的颗粒损失率(例如通风率)在不同建筑物中差异很大。由于非过滤器因素导致的损失率越高,过滤器的效率越低。鉴于给定过滤器在不同时间和不同住宅中的过滤效率存在较大差异,增加系统运行时间可能是提高许多住宅中过滤器性能的有效方法。

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