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Comparison and sensitivity analysis of embodied carbon emissions and costs associated with rural house construction in China to identify sustainable structural forms

机译:与中国农村建设有关的体现碳排放与成本的比较与敏感性分析,识别可持续结构形式

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Sustainable development is crucial to rural regions in China. Although previous studies have investigated the carbon emissions and costs of single-family and rural houses, relatively few studies have compared the characteristics of different structural forms and verified the reliability of their results. In light of sustainable development of rural building structures in China, this study assessed process-based and subproject-based emissions, as well as the costs associated with the construction of a rural residential house, with consideration of three common structural forms. Among the schemes designed using a reinforced concrete framed (CF), block masonry (BM), and prefabricated masonry (PM) structure, the BM scheme afforded the lowest emissions and costs, whereas the CF scheme led to the highest emissions and costs. To identify the key processes for measuring embodied emissions and costs, contribution indicators were proposed and an uncertainty analysis was conducted according to variations in emission factors. The results indicate that the comparison and findings are reliable with respect to current technical levels. A further sensitivity analysis revealed that the CF and PM schemes had the potential to be low-carbon alternatives if emissions from steel and cement production can be significantly reduced in a future scenario. This paper proposes relevant suggestions from the perspectives of material selection, structural member design, and structural form decisions and its findings can help improve the sustainability of rural houses. ? 2021 Elsevier Ltd. All rights reserved.
机译:可持续发展对中国农村地区至关重要。虽然以前的研究已经调查了单家族和农村房屋的碳排放和成本,但研究相对较少,比较了不同结构形式的特征,并验证了结果的可靠性。鉴于中国农村建筑结构的可持续发展,本研究评估了基于过程的基于流程和基于子项目的排放,以及与乡村住宅建造相关的成本,考虑到三种共同的结构形式。在使用钢筋混凝土框架(CF)设计的方案中,块砌块(BM)和预制砌体(PM)结构,BM方案提供了最低排放和成本,而CF方案导致最高排放和成本。为了确定测量体现的排放和成本的关键过程,提出了贡献指标,并根据排放因子的变化进行不确定性分析。结果表明,对当前技术水平的比较和研究结果是可靠的。进一步的敏感性分析表明,如果在未来的情况下可以显着降低来自钢和水泥产生的排放,CF和PM方案有可能是低碳替代方案。本文提出了从材料选择,结构成员设计和结构形式决策的角度提出了相关建议,其调查结果可以帮助提高农村房屋的可持续性。还是2021 elestvier有限公司保留所有权利。

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