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Structured Under-Specification of Life Cycle Impact Assessment Data for Building Assemblies

机译:构建的终身循环影响的规范影响评估数据建筑组件

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摘要

The existence of uncertainties and variations in data represents a remaining challenge for life cycle assessment (LCA). Moreover, a full analysis may be complex, time-consuming, and implemented mainly when a product design is already defined. Structured under-specification, a method developed to streamline LCA, is here proposed to support the residential building design process, by quantifying environmental impact when specific information on the system under analysis cannot be available. By means of structured classifications of materials and building assemblies, it is possible to use surrogate data during the life cycle inventory phase and thus to obtain environmental impact and associated uncertainty. The bill of materials of a building assembly can be specified using minimal detail during the design process. The low-fidelity characterization of a building assembly and the uncertainty associated with these low levels of fidelity are systematically quantified through structured under-specification using a structured classification of materials. The analyst is able to use this classification to quantify uncertainty in results at each level of specificity. Concerning building assemblies, an average decrease of uncertainty of 25% is observed at each additional level of specificity within the data structure. This approach was used to compare different exterior wall options during the early design process. Almost 50% of the comparisons can be statistically differentiated at even the lowest level of specificity. This data structure is the foundation of a streamlined approach that can be applied not only when a complete bill of materials is available, but also when fewer details are known.
机译:存在不确定性和数据变化代表了生命周期评估(LCA)的剩余挑战。此外,完全分析可能是复杂,耗时的,并且主要在已经定义了产品设计时实现。结构化的下面规范,在此开发的方法,在此提出支持住宅建筑设计过程,通过在无法使用的系统上的特定信息时量化环境影响。通过材料和建筑组件的结构化分类,可以在生命周期库存阶段使用替代数据,从而获得环境影响和相关的不确定性。可以在设计过程中使用最小的细节指定建筑物组件的材料清单。通过使用结构化材料分类,通过结构化的尺寸来系统地量化建筑物组件的低保性表征和与这些低级别的保真度相关的不确定性。分析师能够使用此分类来量化每个特异性级别的结果中的不确定性。关于建筑物组件,在数据结构内的每种额外特异性水平上观察到25%的平均下降。这种方法用于比较早期设计过程中的不同外墙选项。几乎50%的比较可以在统计上差异化,即使是最低的特异性。这种数据结构是一种简化方法的基础,不仅可以应用完整的材料清单,而且在较少的细节是已知的。

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