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The role of concrete compressive strength on the service life and life cycle of a RC structure: Case study

机译:混凝土抗压强度对RC结构使用寿命和寿命周期的影响:案例研究

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This paper aims to investigate if the concrete compressive strength could be used as an environmental strategy to increase the sustainability potential of a given RC structure. The main goal is to evaluate if increasing design concrete compressive strength would result a better balance between the amounts of steel and concrete, leading to a decrease of environmental impacts and construction costs, followed by an increase in RC structure service life and/or durability. The Life Cycle Assessment (LCA) has been used to quantify environmental impacts and embodied energy of three four-pavement commercial office building designed with C25, C50, and C75 concrete. Service life has been assessed based on design criteria for durability. Results show that for the studied functional unit RC50 presents better results from the environmental and economical point of view. Despite the positive effects regarding durability, the impacts during material production, construction, and demolition proved that, for this case study, the use of RC75 is not economically nor environmentally advantageous when compared to RC50. This study is an evidence that materials choice and structural design parameters are extremely relevant with regard to the environmental impact and service life of reinforced concrete buildings. Results highlight the importance of the inventory data collection on the life cycle analysis. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文旨在研究混凝土的抗压强度是否可以用作增加给定RC结构可持续性潜力的环境策略。主要目标是评估提高设计混凝土的抗压强度是否会导致钢材和混凝土用量之间更好的平衡,从而导致对环境的影响和建筑成本的降低,进而提高RC结构的使用寿命和/或耐久性。生命周期评估(LCA)已用于量化对三座使用C25,C50和C75混凝土设计的四人行道商业办公楼的环境影响和体现的能量。已根据耐用性设计标准评估了使用寿命。结果表明,从环境和经济角度来看,所研究的功能单元RC50呈现出更好的结果。尽管在耐久性方面产生了积极影响,但在材料生产,构造和拆除过程中的影响证明,对于此案例研究,与RC50相比,使用RC75在经济上或环境上都不是有利的。这项研究表明,材料选择和结构设计参数与钢筋混凝土建筑的环境影响和使用寿命极为相关。结果突出了库存数据收集在生命周期分析中的重要性。 (C)2017 Elsevier Ltd.保留所有权利。

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