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Life Cycle Assessment of Wall Systems.

机译:墙系统的生命周期评估。

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摘要

Natural resource depletion and environmental degradation are the stark realities of the times we live in. As awareness about these issues increases globally, industries and businesses are becoming interested in understanding and minimizing the ecological footprints of their activities. Evaluating the environmental impacts of products and processes has become a key issue, and the first step towards addressing and eventually curbing climate change. Additionally, companies are finding it beneficial and are interested in going beyond compliance using pollution prevention strategies and environmental management systems to improve their environmental performance. Life-cycle Assessment (LCA) is an evaluative method to assess the environmental impacts associated with a products' life-cycle from cradle-to-grave (i.e. from raw material extraction through to material processing, manufacturing, distribution, use, repair and maintenance, and finally, disposal or recycling).;This study focuses on evaluating building envelopes on the basis of their life-cycle analysis. In order to facilitate this analysis, a small-scale office building, the University Services Building (USB), with a built-up area of 148,101 ft2 situated on ASU campus in Tempe, Arizona was studied. The building's exterior envelope is the highlight of this study. The current exterior envelope is made of tilt-up concrete construction, a type of construction in which the concrete elements are constructed horizontally and tilted up, after they are cured, using cranes and are braced until other structural elements are secured. This building envelope is compared to five other building envelope systems (i.e. concrete block, insulated concrete form, cast-in-place concrete, steel studs and curtain wall constructions) evaluating them on the basis of least environmental impact. The research methodology involved developing energy models, simulating them and generating changes in energy consumption due to the above mentioned envelope types. Energy consumption data, along with various other details, such as building floor area, areas of walls, columns, beams etc. and their material types were imported into Life-Cycle Assessment software called ATHENA impact estimator for buildings. Using this four-stepped LCA methodology, the results showed that the Steel Stud envelope performed the best and less environmental impact compared to other envelope types. This research methodology can be applied to other building typologies.
机译:自然资源枯竭和环境退化是我们所处时代的鲜明现实。随着全球对这些问题的认识不断提高,各行各业对了解和减少其活动的生态足迹越来越感兴趣。评估产品和过程对环境的影响已成为关键问题,这是解决并最终遏制气候变化的第一步。此外,公司发现它是有益的,并且对使用污染预防策略和环境管理系统超越合规性以改善其环境绩效感兴趣。生命周期评估(LCA)是一种评估方法,用于评估从摇篮到坟墓(即从原材料提取到材料加工,制造,分销,使用,维修和维护)与产品生命周期相关的环境影响,最后是处置或循环利用。);本研究着重于根据建筑围护结构的生命周期分析来评估围护结构。为了便于进行此分析,研究了位于亚利桑那州坦佩市ASU校园内的小型办公楼,即大学服务大楼(USB),其建筑面积为148,101平方英尺。建筑物的外墙是这项研究的重点。当前的外部外壳由向上倾斜的混凝土结构制成,在这种结构中,将混凝土构件水平构造并向上倾斜,待混凝土固化后,使用起重机将其固定,直到固定其他结构构件为止。将该建筑围护结构与其他五种建筑围护结构系统(即混凝土砌块,隔热混凝土模板,现浇混凝土,钢制螺柱和幕墙结构)进行了比较,并且以对环境的影响最小为依据。研究方法涉及开发能源模型,对其进行模拟并由于上述包络类型而产生能耗变化。能耗数据以及其他各种详细信息,例如建筑物的建筑面积,墙壁,柱子,横梁的面积等及其材料类型,都被导入了称为ATHENA建筑物影响估算器的生命周期评估软件。使用这种四步LCA方法,结果表明,与其他类型的封套相比,Steel Stud封套的效果最佳,对环境的影响也较小。该研究方法可以应用于其他建筑类型。

著录项

  • 作者

    Ramachandran, Sriranjani.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Architecture.;Energy.
  • 学位 M.S.
  • 年度 2013
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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