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Sustainable structural design using life cycle assessment.

机译:使用生命周期评估的可持续结构设计。

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摘要

In sustainable building design, emphasis continues to be placed on reducing building operating energy use, but as buildings strive to become net-zero, environmental impacts embodied in the production of building materials are gaining more consideration. Life cycle assessment (LCA), a methodology that evaluates the environmental impact associated with all stages of a product's life, has been incorporated into green building codes and rating systems in recent years as a performance-based alternative to more prescriptive material sourcing requirements. The U.S. Green Building Council plans to incorporate LCA requirements into the next version of Leadership in Energy and Environmental Design (LEED), the most widely adopted green building rating system. With the release of the new version of LEED (LEED v4), structural engineers will have to address the needs of clients seeking to achieve LCA credits. Previous studies and case studies presented in this paper demonstrate that structural materials contribute, on average, to 50-60% of the overall embodied environmental impact of a building, indicating that structural engineers are posed to play a significant role in meeting green building code and rating system LCA requirements.;LCA has limitations of its own; as demonstrated in this paper, baseline values of embodied environmental impacts cannot be confidently determined for environmental performance comparison purposes. For this reason, green building code and rating system language specifies that environmental impact reduction must be demonstrated with respect to a reference building, which must be of the same size, location, and function as the intended design. To evaluate the applicability of LCA requirements in comparing framing options that are otherwise not designed with the intent of a reduced environmental impact and to determine if changes to structure alone can meet these requirements, four case studies are presented within the context of the draft LEED v4 language. Each case study has multiple framing material options, from which the option with a greater overall environmental impact is chosen to serve as the reference building.;One of four case studies met all of the draft LEED v4 LCA requirements; the three remaining case studies failed on the basis of an increase in at least one environmental impact category. This indicates that based on the existing functionality of LCA, structural engineers cannot readily meet the requirements of the draft LEED v4 rating system through comparison of framing material options alone. Aware that current LCA methods are limited, structural engineers may instead need to design with the intent of a reduced environmental impact through material specification or other design practice in order to meet green building code and rating system LCA requirements.
机译:在可持续建筑设计中,继续将重点放在减少建筑物运行的能源使用上,但是随着建筑物努力实现净零排放,越来越多地考虑到建筑材料生产中体现的环境影响。生命周期评估(LCA)是一种评估与产品生命各个阶段相关的环境影响的方法,近年来已被纳入绿色建筑规范和评级系统,作为基于性能的替代性更严格的材料采购要求。美国绿色建筑委员会计划将LCA要求纳入能源与环境设计领导力(LEED)的下一版本中,LEED是应用最广泛的绿色建筑评级系统。随着新版LEED(LEED v4)的发布,结构工程师将不得不满足寻求获得LCA学分的客户的需求。本文中的先前研究和案例研究表明,结构材料平均占建筑物整体体现的环境影响的50-60%,这表明结构工程师在满足绿色建筑规范和规范方面将扮演重要角色。评级系统LCA要求。; LCA本身有局限性;正如本文所证明的,出于环境绩效比较的目的,无法确定确定的环境影响的基准值。因此,绿色建筑规范和评级系统语言规定,必须针对参考建筑证明其减少环境影响,参考建筑的大小,位置和功能必须与预期设计相同。为了评估LCA要求在比较其他设计方案时是否适用,而这些设计方案并非旨在降低环境影响,并确定结构变更是否可以满足这些要求,在LEED v4草案的背景下提出了四个案例研究语言。每个案例研究都有多个框架材料选项,从中选择具有更大整体环境影响的选项作为参考建筑物。四个案例研究之一满足了LEED v4 LCA草案的所有要求;其余三个案例研究基于至少一个环境影响类别的增加而失败。这表明,基于LCA的现有功能,仅通过比较框架材料选项,结构工程师就无法轻易满足LEED v4评级系统草案的要求。意识到当前LCA方法的局限性,结构工程师可能需要通过材料规范或其他设计实践来减少环境影响,从而满足绿色建筑规范和评级系统LCA要求。

著录项

  • 作者

    Wingo, Lauren.;

  • 作者单位

    The George Washington University.;

  • 授予单位 The George Washington University.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2013
  • 页码 92 p.
  • 总页数 92
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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