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Building information modelling-based framework to contrast conventional and modular construction methods through selected sustainability factors

机译:基于建筑信息建模的框架通过选定的可持续性因素来对比传统和模块化的建筑方法

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In recent years, off-site construction has been significantly hyped as a viable solution for improving the sustainability of the construction industry. There is yet an approach to be developed that can utilise project-specific parameters to quantify the improvement in adopting off-site methods as opposed to conventional construction. This paper focuses specifically on modular construction as an off-site production system, where a decision support tool is proposed for contrasting conventional and modular construction methods based on selected sustainability criteria. The framework relies on quantifying certain measures of: i) social factors, including safety and noise pollution; ii) environmental factors, such as energy consumption, U-value of the building envelope and embodied energy; and iii) economic factors including time and cost of construction. Fuzzy logic, equivalent noise summation and algorithmic mapping are utilised to quantify the sustainable measures adopted. The indices utilised to showcase the possible comparison that can be made between construction methods, are up to the decision maker to decide upon. Realistic case studies, involving the construction of a granny flat and a school are used to demonstrate the applicability of the developed framework. The modular construction method was found to perform on average 21%, 52% and 60% better in terms of the measures adopted for social, environmental and economic costs in contrast with the conventional approach, for the cases considered. (C) 2019 Published by Elsevier Ltd.
机译:近年来,场外建筑被大肆宣传为提高建筑业可持续性的可行解决方案。与常规构造相反,还有一种方法可以开发,该方法可以利用特定于项目的参数来量化采用非现场方法的改进。本文特别关注作为非现场生产系统的模块化建筑,其中提出了一种决策支持工具,用于根据选定的可持续性标准来对比常规和模块化建筑方法。该框架依赖于量化以下指标:i)社会因素,包括安全和噪声污染; ii)环境因素,例如能源消耗,建筑物围护结构的U值和体现的能量; iii)经济因素,包括时间和造价。利用模糊逻辑,等效噪声求和和算法映射来量化所采用的可持续措施。用来展示可能在建造方法之间进行比较的指数取决于决策者来决定。实际的案例研究涉及建造一个奶奶公寓和一所学校,以证明所开发框架的适用性。在所考虑的情况下,与常规方法相比,在采取的社会,环境和经济成本措施方面,模块化施工方法的平均性能提高了21%,52%和60%。 (C)2019由Elsevier Ltd.发布

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