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Eco-decision Making for Pavement Construction Projects.

机译:路面建设项目的生态决策。

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摘要

Life cycle assessment (LCA) is a promising approach that can be used to quantify environmental impacts for selected products within defined system boundaries. Although LCA has begun to be applied to pavement systems, the practice is in its infancy and, as yet, rather ill-defined. Existing pavement LCAs methods and tools are not adequate or consistent in terms of system boundary, data quality, and transparency. Currently, it is not practical to expect pavement practitioners to conduct their own LCAs because of the specialized knowledge and extensive time required. However, an appropriate LCA software tool, intended for use by pavement practitioners, could assist in performing LCAs and allow pavement LCA to become a low-cost standard practice capable of providing valuable accounting and decision support.;This research established an LCA framework and a robust data inventory for pavement LCA that is both deterministic and probabilistic. An Excel-based tool, Roadprint, was developed for this proposed framework and data inventory. This tool can facilitate knowledge that will (1) implement pavement LCA in a standardized and reproducible manner, (2) conduct probabilistic analysis, and (3) generate well-analyzed presentations of results to interpret LCA outputs.;Roadprint was assessed using six standard pavement designs, three case studies, and four other pavement LCA tools. This assessment showed: (1) Roadprint is capable of differentiating various parameters, to delineate projects conditions, and it is superior to other tools in terms of scope, system boundary, and data quality. (2) Improving the material production processes would be the most effective way to mitigate overall environmental impacts of pavement construction. (3) Users of LCA results should be aware of whether feedstock energy is included in the result, because it can increase reported energy consumption two to threefold. (4) Comparisons results from different LCA tools can be misleading because the differences in tools could overwhelm the differences in actual processes. (5) It is essential to match the scope, system boundary, and data quality of the LCA tool being used to the goal of an LCA comparison or accounting.;In summary, Roadprint can help researchers, policy makers, and engineers make better decisions prior to the implementation of environment-significant and costly pavement projects.
机译:生命周期评估(LCA)是一种很有前途的方法,可用于量化在定义的系统范围内选定产品的环境影响。尽管LCA已开始应用于人行道系统,但这种做法尚处于起步阶段,而且定义还不明确。就系统边界,数据质量和透明度而言,现有的路面LCA方法和工具不充分或不一致。目前,由于专业知识和所需的大量时间,期望路面从业人员进行自己的LCA是不切实际的。但是,供路面从业人员使用的适当的LCA软件工具可以帮助执行LCA,并使路面LCA成为能够提供有价值的会计和决策支持的低成本标准做法。该研究建立了LCA框架和确定性和概率的路面LCA的可靠数据清单。为此建议的框架和数据清单开发了基于Excel的工具Roadprint。该工具可以促进以下知识的发展:(1)以标准化且可重复的方式实施路面LCA;(2)进行概率分析;(3)生成分析结果详尽的表述以解释LCA输出;路面设计,三个案例研究以及其他四个路面LCA工具。该评估表明:(1)路线图能够区分各种参数,描述项目条件,并且在范围,系统边界和数据质量方面优于其他工具。 (2)改善材料生产工艺将是减轻路面施工对环境总体影响的最有效方法。 (3)LCA结果的使用者应注意结果中是否包含原料能量,因为它会使报告的能耗增加两到三倍。 (4)来自不同LCA工具的比较结果可能会产生误导,因为工具的差异可能会压倒实际流程中的差异。 (5)必须使所使用的LCA工具的范围,系统边界和数据质量与LCA比较或计费的目标相匹配。总而言之,Roadprint可帮助研究人员,政策制定者和工程师做出更好的决策在实施对环境影响重大且成本高昂的人行道工程之前。

著录项

  • 作者

    Lin, Yen-Yu.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 273 p.
  • 总页数 273
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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