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Life cycle assessment of residential windows: Analyzing the environmental impact of window restoration versus window replacement.

机译:住宅窗户的生命周期评估:分析窗户修复与窗户更换对环境的影响。

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摘要

New windows are rated based on their energy performance during the use phase. This rating neglects the overall environmental impact caused by raw material extraction, manufacturing, maintenance and disposal. Due to the number of residential window replacements occurring today in the United States, there is a growing need to quantify the sustainability of window preservation as an alternative to window replacement.;This study assessed the environmental impact of historic wood window restoration versus window replacement for the entire "cradle to grave" life cycle of the window assembly. This study focused on a typical, mid-twentieth century housing development in the Northeast United States using four window configurations as follows: 1. Restored original wood window with a new exterior aluminum storm window; 2. PVC replacement window; 3. Aluminum-clad wood replacement window; 4. Wood replacement window.;The dissertation assessed the life cycle of window configurations using GaBi Software. The life cycle inventories were analyzed using the TRACI 2.1 impact method which translated the environmental consequences of the life cycle assessment processes into quantifiable environmental impacts. The dissertation also considered window thermal performance and life cycle costs.;When considering life cycle environmental impacts, thermal performance, energy savings and material costs, the results indicated that wood window restoration was the best option when compared to replacement windows considered in this study; however, the results indicated that building service life and window service life assumptions could impact results.;Thermal performance testing of windows revealed that window restoration techniques undertaken in this study improved the window's overall thermal performance. The testing also indicated that the effects of air infiltration had minimal influence on the performance of the restored window assembly when compared to a high performance replacement window.;The results of the energy model exhibited only a small annual energy savings between the restored window assembly and a high performance replacement window. The payback cost analysis revealed that, while there was an immediate financial benefit of window replacement with the PVC option, window replacement frequency and overall life cycle environmental impacts would favor the restored window option.
机译:新窗户的使用基于其在使用阶段的能效等级。该等级忽略了原材料提取,制造,维护和处置对整体环境的影响。由于当今美国发生的住宅用窗户更换的数量众多,因此越来越需要量化窗户保存作为窗户更换的替代品的可持续性;本研究评估了历史性木质窗户修复与窗户更换对环境的影响窗户组件的整个“摇篮到坟墓”生命周期。这项研究集中于美国东北部典型的20世纪中叶房屋开发,使用以下四个窗口配置:1.使用新的外部铝制防风窗恢复原始的木质窗户; 2. PVC更换窗; 3.铝包木更换窗; 4.木材更换窗户。本论文使用GaBi软件评估了窗户配置的生命周期。使用TRACI 2.1影响方法分析了生命周期清单,该方法将生命周期评估过程的环境后果转化为可量化的环境影响。本文还考虑了窗户的热性能和生命周期成本。当考虑生命周期的环境影响,热性能,节能和材料成本时,结果表明,与本研究中考虑的更换窗户相比,木窗修复是最佳选择。但是,结果表明建筑物的使用寿命和窗户的使用寿命假设可能会影响结果。窗户的热性能测试表明,本研究中采用的窗户修复技术改善了窗户的整体热性能。该测试还表明,与高性能更换窗户相比,空气渗透的影响对修复后的窗户组件的性能影响最小。;能量模型的结果显示,在修复后的窗户组件和空调之间,每年仅节省少量的能源。高性能更换窗口。投资回收期成本分析显示,尽管使用PVC选件更换车窗具有直接的经济利益,但更换车窗的频率和整个生命周期对环境的影响将有利于恢复后的车窗选件。

著录项

  • 作者单位

    Temple University.;

  • 授予单位 Temple University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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