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传统绿色建筑和净零能耗建筑的动态生命周期评估:静态、动态、归因和 consequential 电网模型的探索。

Dynamic Life Cycle Assessments of a Conventional Green Building and a Net Zero Energy Building: Exploration of Static, Dynamic, Attributional, and Consequential Electricity Grid Models.

机构信息

Department of Civil and Environmental Engineering , University of Pittsburgh , 153 Benedum Hall, 3700 O'Hara Street , Pittsburgh , Pennsylvania 15261 , United States.

Department of Civil & Environmental Engineering , Colorado School of Mines , 206 Coolbaugh Hall, 1012 14th Street , Golden , Colorado 80401 , United States.

出版信息

Environ Sci Technol. 2018 Oct 2;52(19):11429-11438. doi: 10.1021/acs.est.7b06535. Epub 2018 Sep 21.

DOI:10.1021/acs.est.7b06535
PMID:30193455
Abstract

Our study assesses the differences between regional average- and marginal-electricity generation mixes as well as the variability between predicted and observed energy consumption of a "conventional green" Leadership in Energy and Environmental Design (LEED) building and a Net-Zero Energy Living Building (NZEB). The aim of our study was to evaluate the importance of using temporally resolved building-level data while capturing the dynamic effects a changing electrical grid has on the life cycle impacts of buildings. Two static and four dynamic life cycle assessment (LCA) models were evaluated for both buildings. Both buildings' results show that the most appropriate models ( hybrid consequential for the LEED Gold building, hourly consequential for the NZEB) significantly modified the use-phase global warming potential (GWP) impacts relative to the design static LCA (49% greater impact for the LEED Gold building; 45% greater reduction for the NZEB). In other words, a "standard" LCA would underestimate the use phase impacts of the LEED Gold building and the benefits of the NZEB in the GWP category. Although the results in this paper are specific to two case study buildings, the methods developed are scalable and can be implemented more widely to improve building life cycle impact estimates.

摘要

我们的研究评估了区域平均和边际电力组合之间的差异,以及“传统绿色”能源与环境设计(LEED)建筑和净零能耗生活建筑(NZEB)的预测和观察到的能源消耗之间的可变性。我们的研究旨在评估在捕捉不断变化的电网对建筑物生命周期影响的动态效应时,使用时间分辨的建筑物级数据的重要性。对这两栋建筑评估了两个静态和四个动态生命周期评估(LCA)模型。这两栋建筑的结果均表明,最合适的模型(LEED 金级建筑采用混合推论法,NZEB 建筑采用每小时推论法)相对于设计静态 LCA,显著改变了使用阶段的全球变暖潜能值(GWP)影响(LEED 金级建筑的影响增加了 49%;NZEB 的影响减少了 45%)。换句话说,“标准”LCA 会低估 LEED 金级建筑的使用阶段影响,以及 NZEB 在 GWP 类别中的效益。尽管本文的结果特定于两个案例研究建筑,但所开发的方法具有可扩展性,可以更广泛地实施,以提高建筑物生命周期影响估计的准确性。

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