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首页> 外文期刊>International Journal of Ventilation >Durable Airtightness in Single-Family Dwellings - Field Measurements and Analysis
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Durable Airtightness in Single-Family Dwellings - Field Measurements and Analysis

机译:单户住宅的持久气密性-现场测量和分析

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Durability of the building envelope is important to new homes that are increasingly built with improved levels of airtightness. It is also important to weatherized homes such that energy savings from retrofit measures, such as air sealing, are persistent. This paper presents a comparison of air leakage measurements collected in November 2013 through March 2014, with two sets of prior data collected between 2001-2003 from 17 new homes located near Atlanta, GA, and 17 homes near Boise, ID that were weatherized in 2007-2008. The purpose of the comparison is to determine if there are changes to the airtightness of building envelopes over time. The air leakage increased in all but one of the new homes, with a mean increase of about 25%. The weatherized homes also showed an increase in the mean air leakage (12%). A regression analysis was performed to describe the relationship between prior and current measurements in terms of normalized leakage (NL). The best estimate of the ageing factor predicts a 15% increase in NL over ten years. Further analysis using ResDB data (LBNL's Residential Diagnostic Database) showed the expected changes in air leakage if ageing were modelled. These results imply the need to examine the causes of increased leakage and methods to avoid them. This increase in leakage with time should be accounted for in long-term population-wide energy savings estimates, such as those used in ratings or energy savings programs.
机译:建筑围护结构的耐用性对于新建的气密性日益提高的新房屋至关重要。对于风化的房屋来说,保持改建措施(例如气密性)的节能持续存在也很重要。本文对从2013年11月到2014年3月收集的空气泄漏测量值进行了比较,并收集了2001-2003年间从乔治亚州亚特兰大附近的17栋新房屋和内华达州博伊西附近的17栋房屋中收集的两组先前数据,这些房屋在2007年进行了风化-2008。比较的目的是确定建筑物围护结构的气密性是否随时间变化。除一个新房外,其他所有房屋的漏风量均在增加,平均增幅约为25%。风化的房屋还显示出平均漏气增加(12%)。进行了回归分析,以归一化泄漏(NL)来描述先前测量值与当前测量值之间的关系。对衰老因子的最佳估计是,未来十年内NL会增加15%。使用ResDB数据(LBNL的住宅诊断数据库)进行的进一步分析显示,如果对老化进行建模,则可以预期漏气的变化。这些结果意味着需要检查泄漏增加的原因以及避免泄漏的方法。随着时间的流逝,泄漏量的增加应在整个人群的长期节能估算中得到考虑,例如等级或节能计划中使用的估算。

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