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Safety assessment of all-steel-type attached lifting scaffold based on grey Euclidean theory

机译:基于灰色欧几里德理论的全钢型附加升降支架安全评估

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To reduce the incidence of safety accidents during the construction of all-steel-type attached lifting scaffolds and address the research gaps in related fields, in this study a theoretical model of trajectory crossing accidents was coupled with an analysis of similar safety accidents to determine the causes of accidents in the construction of high-rise buildings using steel-type attached lifting scaffolds. To do so, a safety evaluation index system covering all steel-type attached lifting scaffolds that comprises five first-level indicators and 17 second-level indicators was established. The first-level indicators cover three risk dimensions: unsafe human behavior (personal operations), unsafe conditions (material performance, structural calculation, components and connections), and lack of management (safety management). A combined multi-agent-based modeling (MABM) method and structural entropy weight were used to calculate a comprehensive weight for better alignment of the weight calculation results with objective laws. A safety assessment model for an all-steel-type attached lifting scaffolding was constructed using grey relative Euclidean weighted correlation theory to enable the calculation of a grey-to-Euclidean weighted correlation degree that directly correlates with the degree of security. Using the established assessment model, four projects were subjected to a safety evaluation, with the results validating the model by revealing that its output was consistent with the actual security situation.
机译:为了减少全钢型附加脚手架的建设期间安全事故的发生率,并解决相关领域的研究差距,在这项研究中,轨迹交叉事故的理论模型与类似的安全事故的分析相结合,以确定钢型升降支架施工高层建筑施工原因。为此,建立了一种安全评价指标系统,涵盖所有钢型附着支架,包括五个第一级指示剂和17个第二级指标。第一级指标涵盖了三个风险尺寸:不安全的人类行为(个人运营),不安全的条件(材料性能,结构计算,组件和连接),以及缺乏管理(安全管理)。基于组合的基于代理的造型(MABM)方法和结构熵权使用来计算综合体重以使重量计算结果与客观法则更好地对准。使用灰色相对欧几里德加权相关理论构建全钢型附加脚手架的安全评估模型,以便计算灰色到欧几里德加权相关程度,其直接与安全程度相关。使用既定的评估模型,将四个项目进行安全评估,结果通过揭示其产出与实际安全情况一致。

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