Yan Kesheng, Jin Lianghai, Yu Xiaoyun
College of Hydraulic & Environmental Engineering, China Three Gorges University, Yichang, 443002, Hubei, China.
Safety Production Standardization Evaluation Center of China Three Gorges University, Yichang, 443002, Hubei, China.
Sci Rep. 2024 Mar 9;14(1):5776. doi: 10.1038/s41598-024-56039-9.
In order to accurately evaluate the safety risk degree of lifting operations and improve the safety control level of lifting operations, firstly, Work Breakdown Structure (WBS) is used to decompose the construction process of lifting operations, Risk Breakdown Structure (RBS) is used to decompose the safety risk, 16 safety risk factors of lifting operations are identified, and the risk evaluation system is constructed. Then, the safety risk assessment model of lifting operations is constructed by integrating risk coupling theory, joint ordered weighting operators, and an interaction matrix to identify key risk factors and safety risk levels. Finally, taking the lifting operation construction project of Yangfanggou Hydropower Station as an example, the evaluation index system and method are applied. The results show that the high-risk safety risks of the lifting operation construction of the project are: 'Low safety awareness causes workers to operate illegally X', 'Operation error caused by illegal command X', 'Workers' risky work caused by low safety awareness X', 'Edge, high and climbing operation protection is not in place X', and 'Improper binding of components caused by workers' illegal operation X'. The construction of the lifting operation poses a significant risk level, and the evaluation results are consistent with the actual situation. The rationality of the evaluation system and model constructed in this paper can provide a reference for the safety management and control of the construction site of the lifting operation and the safety of the lifting operation.
为准确评估起重作业安全风险程度,提高起重作业安全管控水平,首先采用工作分解结构(WBS)对起重作业施工过程进行分解,运用风险分解结构(RBS)对安全风险进行分解,识别出起重作业的16个安全风险因素,构建风险评估体系。然后,通过整合风险耦合理论、联合有序加权算子和交互矩阵,构建起重作业安全风险评估模型,以识别关键风险因素和安全风险等级。最后,以杨房沟水电站起重作业建设项目为例,应用该评价指标体系和方法。结果表明,该项目起重作业施工的高风险安全风险有:“安全意识淡薄导致工人违规操作X”、“违章指挥造成操作失误X”、“安全意识淡薄导致工人冒险作业X”、“边缘、高处及攀登作业防护不到位X”、“工人违规操作造成构件绑扎不当X”。起重作业施工存在重大风险等级,评价结果与实际情况相符。本文构建的评价体系和模型的合理性可为起重作业施工现场的安全管理与控制及起重作业安全提供参考。