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Uncertainty in the life cycle assessment of building emissions: A comparative case study of stochastic approaches

机译:建筑排放物生命周期评估中的不确定性:随机方法的比较案例研究

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摘要

Life cycle assessment of buildings has become popular recently, due to the significant potential of emission reduction. Previous studies have contributed much to the quantification of emissions, yet the issue of uncertainties needs to be further investigated. In general, the uncertainty in life cycle assessment is mainly due to the errors in input parameters, definition of system boundary and scenario assumptions, and choice of analytical models, which could be summarized as parameter, scenario, and model uncertainties. In the present study, data quality indicators were adopted and a semi-quantitative method was modeled accordingly, relevant to the uncertainty analysis of building emission assessment. A case study building was analyzed comparing the deterministic and stochastic approaches, and the results indicate that the uncertainty in input parameters could result in a standard deviation of 3106 tCO(2e) for the sample mean of 61504 tCO(2e), which is in line with the deterministic results. Further scenario analyses investigated the influence of scenario and modelling alternatives. Relevant results emphasized the definition of system boundary and energy efficiency to control uncertainties, and suggested applying statistical distribution for key parameters in analysis. Overall, the present study could provide useful information on the uncertainty of life cycle emission assessment, and, therefore, be helpful in decision-making regarding the low-carbon development of building industry.
机译:由于减少排放的巨大潜力,建筑物的生命周期评估最近变得很流行。先前的研究对排放的量化做出了很大贡献,但是不确定性问题需要进一步研究。通常,生命周期评估中的不确定性主要是由于输入参数,系统边界和方案假设的定义以及分析模型的选择等方面的错误所致,这些错误可以概括为参数,方案和模型不确定性。在本研究中,采用了数据质量指标,并据此建立了一种半定量方法,与建筑物排放评估的不确定性分析有关。分析了一个案例研究大楼,比较了确定性方法和随机方法,结果表明,输入参数的不确定性可能导致61504 tCO(2e)样本平均值的标准差为3106 tCO(2e),符合标准确定性的结果。进一步的情景分析研究了情景的影响和建模替代方案。相关结果强调了系统边界和能效的定义,以控制不确定性,并建议对统计中的关键参数应用统计分布。总体而言,本研究可以提供有关生命周期排放评估不确定性的有用信息,因此,有助于有关建筑行业低碳发展的决策。

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