Research on Coupling Effect Measurement and Coupling Risk Simulation of Green Building Construction Safety Risk Factors

Yingchen Wang, Jiayao Guo, Xiaoxiao Geng, Wei Li
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Abstract

The construction of green buildings is an important direction for the transformation and development of the construction industry, but it is beset with problems such as a lack of construction experience, immature new technologies, and unstable material properties; these issues bring risks to the construction stage of green buildings, and the coupling of uncertain risk factors in the construction process of green buildings may lead to unfavorable results. The purpose of this study is to explore the coupling degree of green building construction safety risk factors and the changing trend in their coupling combinations at the system risk level. First, the risk factor index system was defined by reading the literature and gathering expert opinions, and the coupling degree between risk factors was measured using an improved coupling degree model. Then, a system dynamics model was established to simulate and analyze the coupling effects among the risk factors and determine the combinations with the greatest influence. The results show that the risk probability is proportional to the risk coupling value, the human–environment coupling value is the largest, and the material equipment–management coupling value is the smallest. The human–environment system simulation shows that reducing the coupling value of system factors will promote a decrease in the total level of system risk. According to the research conclusions, measures to prevent risk coupling are proposed, which offer theoretical references for green building practitioners carrying out risk management; these measures hold a certain guiding significance for the risk control and future development of green buildings.
绿色建筑施工安全风险因素耦合效应测量与耦合风险模拟研究
绿色建筑施工是建筑业转型发展的重要方向,但其存在施工经验不足、新技术不成熟、材料性能不稳定等问题,这些问题给绿色建筑施工阶段带来了风险,绿色建筑施工过程中不确定风险因素的耦合可能导致不利的结果。本研究旨在从系统风险层面探讨绿色建筑施工安全风险因素的耦合度及其耦合组合的变化趋势。首先,通过阅读文献和收集专家意见,确定了风险因素指标体系,并利用改进的耦合度模型测算了风险因素之间的耦合度。然后,建立系统动力学模型,模拟分析风险因素之间的耦合效应,确定影响最大的风险因素组合。结果表明,风险概率与风险耦合值成正比,人-环境耦合值最大,物资设备-管理耦合值最小。人-环境系统模拟表明,降低系统因素的耦合值将促进系统风险总水平的下降。根据研究结论,提出了防范风险耦合的措施,为绿色建筑从业人员开展风险管理提供了理论参考,对绿色建筑的风险控制和未来发展具有一定的指导意义。
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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