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Assessment of occupational risks from human health and environmental perspectives: a new integrated approach and its application using fuzzy BWM and fuzzy MAIRCA

机译:从人类健康和环境视角评估职业风险:一种新的综合方法及其使用模糊BWM和模糊MAIRCA的应用

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摘要

Occupational safety issues encountered in the worksite environment are the issues that companies should consider in improving their operations with a view to human health and environmental awareness. Many methods with different rationales have been existed in the literature to prioritize hazards according to their risk levels and to mitigate their consequences. In this study, a new model is developed for occupational risk assessment by merging two well-known multi-criteria decision-making methods named best and worst method (BWM) and multi attribute ideal real comparative analysis (MAIRCA) under fuzzy environment. The proposed model differentiates from other similar models by three aspects. First, it considers severity of a hazard and its associated risk from the human and environmental riskiness perspectives. Secondly, it applies fuzzy BWM (F-BWM) to calculate the relative importance of three risk factors named as "probability, frequency and severity" of traditional Fine-Kinney method. Thirdly, it applies fuzzy MAIRCA (F-MAIRCA) to rank hazards according to their risk level using importance values obtained by F-BWM. To show applicability of the approach, a case study of risk assessment in a marble factory is fulfilled. Additionally, a number of validation studies including benchmarking analysis with fuzzy VIKOR and fuzzy TOPSIS methods; a sensitivity analysis by varying importance weights of risk factors are carried out to highlight the solidity of the proposed approach.
机译:工地环境中遇到的职业安全问题是公司应考虑在改善其业务方面的问题,以期人类健康和环境意识。在文献中存在许多具有不同理论的方法,以优先根据其风险水平确定危害,并减轻其后果。在这项研究中,通过在模糊环境下合并了名为最佳和最糟糕的方法(BWM)和多属性理想的实际比较分析(Mairca)的职业知名多标准决策方法而开发了一种为职业风险评估而开发的新模式。所提出的模型通过三个方面与其他类似模型的区别。首先,它考虑了危险的严重程度及其与人类风险性观点的相关风险。其次,它适用模糊BWM(F-BWM)来计算传统细小血管方法的三种危险因素的相对重要性,称为“概率,频率和严重性”。第三,它将模糊的Mairca(F-Mairca)应用于使用F-BWM获得的重要性值,根据其风险水平对危害进行排名。为了表明该方法的适用性,满足了大理石工厂风险评估的案例研究。此外,许多验证研究包括使用模糊Vikor和模糊Tootsis方法的基准分析;通过改变风险因素重量的灵敏度分析,以突出所提出的方法的稳定性。

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