Research on Carbon Emission Pre-Assessment of Residential Buildings in Xi’an City during the Scheme Design Stage

Huan Gao, Lu Yang, Xinke Wang, Lisha Zhang, Qize Wang, Kang Wu
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Abstract

The effect of energy saving and carbon reduction in the building industry is closely related to the realization of China’s double carbon goal. In this study, a two-dimensional framework for building life cycle carbon emissions was established, which takes into account the early stages of building design such as the feasibility study stage and scheme design stage. Taking 57 residential buildings in Xi’an City as examples, the life cycle carbon emission characteristics of residential buildings in cold areas were introduced. This study found that the life cycle carbon emission intensity is about 45~55 kgCO2/(m2·a). The operation and maintenance stage and building materials production stage accounted for the largest proportion of carbon emissions, and the sum of carbon emissions of the two stages accounted for 92.3% of the total carbon emissions. In addition, based on the probability density function, the carbon emission intensity distributions of the building life cycle, building material production stage, building material transportation stage, and operation and maintenance stage were analyzed, and it was found that each distribution fitting graph was generally in line with a lognormal distribution, and their expected value provided a reference index for carbon emission pre-assessment in the feasibility study stage. Based on the analysis and determination of 11 independent variables that affect the total carbon emissions, such as area, floor number, story height, and number of households, a multiple linear regression model for carbon emission pre-assessment in the design stage of building schemes is proposed. The R2adj of the model is 0.985 and the error is about 10%. The prediction model can provide beneficial guidance for the life cycle carbon emission prediction in the design stage of building projects, so as to reduce carbon emissions by changing building design.
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西安市住宅建筑方案设计阶段碳排放预评估研究
建筑行业的节能减碳效果与中国双碳目标的实现息息相关。本研究建立了建筑生命周期碳排放的二维框架,将建筑设计初期的可行性研究阶段和方案设计阶段纳入考虑范围。以西安市 57 栋居住建筑为例,介绍了寒冷地区居住建筑的生命周期碳排放特征。研究发现,建筑全生命周期碳排放强度约为 45~55 kgCO2/(m2-a)。其中,运行维护阶段和建材生产阶段的碳排放量占比最大,两个阶段的碳排放量之和占总碳排放量的 92.3%。此外,基于概率密度函数,分析了建筑生命周期、建材生产阶段、建材运输阶段和运营维护阶段的碳排放强度分布,发现各分布拟合图总体上符合对数正态分布,其期望值为可行性研究阶段的碳排放预评估提供了参考指标。在分析确定影响碳排放总量的面积、层数、层高、户数等 11 个自变量的基础上,提出了建筑方案设计阶段碳排放预评估的多元线性回归模型。模型的 R2adj 为 0.985,误差约为 10%。该预测模型可为建筑项目设计阶段的生命周期碳排放预测提供有益指导,从而通过改变建筑设计减少碳排放。
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