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The Reduction of CO 2 Emissions by Application of High-Strength Reinforcing Bars to Three Different Structural Systems in South Korea

机译:通过在韩国的三种不同结构系统中应用高强度加固杆对CO 2排放的减少

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摘要

The architecture, engineering, and construction (AEC) industry consume approximately 23% of the national energy annually, and are considered among the highest energy consuming industries. Recently, several studies have focused on establishing strategies to reduce the emissions of carbon dioxide in the AEC industry by utilisation of low-carbon materials, material reuse, recycling and minimal usage; selection of an optimal structural system and structural optimisation; and optimisation of construction operations. While several studies examined material selection and replacement in concrete, there is a paucity of studies investigating the replacement and implementation of high-strength re-bars to lower the carbon dioxide emissions in buildings. To fill this research gap, the purpose of this study involves calculating the emissions of carbon dioxide by applying high-strength reinforcement bars in three different types of buildings. The input–output analysis method was adopted to compute the emissions of carbon dioxide by using the yield strength and size. This study showed that the application of the high-strength re-bars is beneficial in reducing the input amount of materials, although the quantity of reinforcing bars on the development and splice increased. Furthermore, the application of high-strength deformed bars is also advantageous as a means of carbon dioxide reduction in the studied structural systems. In this study, the CO 2 emissions of three different structural systems indicated that implementing SD500 re-bars is the most effective method to reduce carbon dioxide emissions.
机译:该建筑,工程和建筑(AEC)行业每年消耗大约23%的国家能源,并被认为是最高的能耗行业。最近,几项研究致力于通过利用低碳材料,材料再利用,回收和最小使用,建立降低AEC产业中二氧化碳排放的策略;选择最佳结构系统和结构优化;和施工运营的优化。虽然有几项研究检查了混凝土中的材料选择和更换,但缺乏研究的研究,调查了高强度重新杆的更换和实施,以降低建筑物中的二氧化碳排放。为了填补这项研究差距,本研究的目的涉及通过在三种不同类型的建筑物中应用高强度加强棒来计算二氧化碳排放。采用输入输出分析方法来计算二氧化碳排放通过使用屈服强度和尺寸来计算二氧化碳排放。这项研究表明,高强度重杆的应用是有益的减少材料的输入量,尽管在发育和接头上的增强条的数量增加。此外,高强度变形条的应用也是有利的,作为研究的结构系统中的二氧化碳的装置。在这项研究中,三种不同结构系统的CO 2排放表明,实施SD500 RE-BARS是减少二氧化碳排放的最有效的方法。

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