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An analytical method for evaluating and visualizing embodied carbon emissions of buildings

机译:评估和可视化建筑物碳排放的分析方法

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Greenhouse gas emissions associated with buildings constitute a large part of global emissions, where building materials and associated processes make up a significant fraction. These emissions are complicated to evaluate with current methodologies due to, amongst others, the lack of a link between the material inventory data and the aggregated results. This paper presents a method for evaluating and visualizing embodied emission (EE) data of building material production and transport, including replacements, from building life cycle assessments (LCAs). The method introduces a set of metrics that simultaneously serve as a breakdown of the EE results and as an aggregation of the building's inventory data. Furthermore, future emission reductions due to technological improvements are modeled and captured in technological factors for material production and material transport. The material inventory is divided into building subparts for high-resolution analysis of the EE. The metrics and technological factors are calculated separately for each subpart, which can then be evaluated in relation to the rest of the building and be compared to results from other buildings. Two methods for evaluating and visualizing the results are presented to illustrate the method's usefulness in the design process. A case study is used to demonstrate the methods. Key driving factors of EE are identified together with effective mitigation strategies. The inclusion of technological improvements shows a significant reduction in EE ( 11.5%), reducing the importance of replacements. Furthermore, the method lays the foundation for further applications throughout the project phases by combining case-specific data with statistical data.
机译:与建筑物相关的温室气体排放构成全球排放的一大部分,其中建筑材料和相关工艺弥补了大部分。由于其他方法,这些排放量很复杂,因为其中缺乏材料库存数据和聚合结果之间的联系。本文介绍了一种评估和可视化建筑物生产和运输(包括替代品)的体现(EE)数据的方法,从建立生命周期评估(LCA)。该方法介绍了一组指标,它同时用作EE结果的分解,并作为建筑物库存数据的聚合。此外,在材料生产和物质运输的技术因素中建模和捕获未来的减排。材料库存分为ee的高分辨率分析的构建子部分。每个子部分单独计算度量和技术因素,然后可以与建筑物的其余部分进行评估,并与来自其他建筑物的结果相比进行评估。提出了两种评估和可视化结果的方法,以说明该方法在设计过程中的有用性。案例研究用于展示该方法。 EE的关键驾驶因子与有效的缓解策略一起确定。纳入技术改善表明EE的显着降低(11.5%),降低了替代品的重要性。此外,该方法通过将特定于统计数据组合的情况相结合,为整个项目阶段提供进一步应用的基础。

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