Exploring Performance of Using SCM Concrete: Investigating Impacts Shifting along Concrete Supply Chain and Construction

Shiwei Chen, Zhukai Ye, Weizhuo Lu, Kailun Feng
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Abstract

Concrete is one of the most used building materials globally, leading to a large amount of greenhouse gas (GHG) emissions. Using supplementary cementitious materials (SCM) as replacements for cement in concrete provides an effective way to reduce GHG emissions. However, quantifying the construction performance of using SCM concrete is hard because of complex interactions between concrete’s mechanical properties and construction characteristics, like local energy supply, surrounding temperature and construction plans, which leads to only the fragmental performance of using SCM concrete being explored in previous studies. There still lacks an effective way to quantify the comprehensive performance and provide decision support for contractors about how to use SCM concrete. To deal with the gap, this research proposes a Collection–Simulation–Calculation–Decision (CSCD) method to analyze the complex interactions between concrete and construction, and to quantify the performance of the supply chain–construction when using SCM. A case study is also conducted to demonstrate the effectiveness of the proposed method. The results show that the proposed method is effective in quantifying the performance of using SCM concrete in construction and providing decision support for construction decision makers. A scenario analysis is also conducted to demonstrate the effectiveness of the proposed method in different project characteristics, including the global warming potential (GWP) factors for different construction sites, seasonal temperature changes and different construction plans. The proposed method is an effective tool to quantify the construction performance of using SCM concrete considering complex interactions between concrete mechanical properties and construction characteristics. The results of the research can assist construction decision makers to make decisions about using SCM concrete by comprehensively understanding the impacts shifting along the concrete supply chain and construction.
探索使用 SCM 混凝土的性能:调查混凝土供应链和建筑施工的影响变化
混凝土是全球使用最多的建筑材料之一,导致大量温室气体(GHG)排放。在混凝土中使用胶凝补充材料(SCM)替代水泥是减少温室气体排放的有效途径。然而,由于混凝土的力学性能与施工特点(如当地能源供应、周围温度和施工计划)之间存在复杂的相互作用,因此很难量化使用 SCM 混凝土的施工性能,这导致以往的研究仅探讨了使用 SCM 混凝土的部分性能。目前仍缺乏量化综合性能的有效方法,无法为承包商提供如何使用 SCM 混凝土的决策支持。针对这一空白,本研究提出了一种收集-模拟-计算-决策(CSCD)方法,以分析混凝土与建筑之间复杂的相互作用,并量化使用 SCM 时供应链-建筑的性能。此外,还进行了一项案例研究,以证明所提方法的有效性。结果表明,所提出的方法能有效量化在建筑中使用 SCM 混凝土的性能,并为建筑决策者提供决策支持。此外,还进行了情景分析,以证明拟议方法在不同项目特征下的有效性,包括不同施工现场的全球升温潜能值(GWP)系数、季节性温度变化和不同施工计划。考虑到混凝土力学性能和施工特点之间复杂的相互作用,建议的方法是量化使用 SCM 混凝土施工性能的有效工具。研究结果可帮助建筑决策者全面了解混凝土供应链和施工过程中产生的影响,从而做出使用 SCM 混凝土的决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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