Life cycle assessment application in the optimum design of reinforced concrete structures

A. F. Angelin, Ricardo Couceiro Bento, L. M. Gavioli, J. A. Rossignolo
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Abstract

Abstract The objective of this research was to evaluate the use of the Life Cycle Assessment methodology to assist decision-making in structural projects of reinforced concrete. Were studied structural models for an eight-story building, with classes of compressive strength (fck) of concrete ranging from 25 to 50 MPa. Also, were evaluated changes in the dimensions of structural elements, as well as the consumption of component materials of the structure. Results showed that the structural models for classes C40 obtained the best results for 67% of the categories of potential impacts assessed, with potential impact values ranging from 7.4% to 21.2%, including the possibility of saving 18 thousand kg of CO2 emitted. After carrying out an economic analysis, was observed that the structural model for the C40 concrete presented the optimal environmental-economic solution. The results of this research indicate the feasibility of using the Life Cycle Assessment methodology and economic analysis as tools to assist in decision-making during the design process of reinforced concrete structures.
生命周期评价在钢筋混凝土结构优化设计中的应用
摘要本研究的目的是评估生命周期评估方法在钢筋混凝土结构项目决策中的应用。我们研究了一栋八层建筑的结构模型,混凝土的抗压强度(fck)等级从25到50兆帕不等。此外,我们还评估了结构元件尺寸的变化,以及结构部件材料的消耗。结果表明,C40类结构模型在67%的潜在影响评估类别中获得了最佳结果,潜在影响值范围为7.4%至21.2%,其中包括节省1.8万kg二氧化碳排放的可能性。通过经济分析,发现C40混凝土结构模型具有最优的环境经济解决方案。本研究结果表明,在钢筋混凝土结构设计过程中,使用生命周期评估方法和经济分析作为辅助决策的工具是可行的。
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