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首页> 外文期刊>Journal of occupational health. >Prioritizing Factors Associated with Thermal Stresses Imposed on Workers in Steel and Iron Casting Industries Using the Monte Carlo Simulation and Sensitivity Analysis
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Prioritizing Factors Associated with Thermal Stresses Imposed on Workers in Steel and Iron Casting Industries Using the Monte Carlo Simulation and Sensitivity Analysis

机译:使用蒙特卡洛模拟和敏感性分析对钢和铸铁行业工人施加的与热应力相关的优先因素

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Objectives: The aims of this study were to develop approaches for monitoring and prioritizing factors associated with thermal stresses imposed on workers in iron and steel casting industries, and to eventually purpose effective control strategies. Methods: The whole study was completed in the furnace areas of two steel casting and two iron casting plants, where the air temperature (Ta), radiant temperature (Tr), air velocity (Va) and partial water vapor pressure (Pa) were measured continuously during two consecutive work cycles. Simultaneously, the metabolic rates (M) of all workers in the furnace area were also measured. Results: Using the WBGT as an index for screening purposes, our results suggest that all furnace area workers in both types of casting plants might experience severe heat stress. The predicted heat strain (PHS) model proposed by ISO 7933 was further adopted for detailed analysis from the physiological aspect. Through use of the Monte Carlo simulation and sensitivity analysis, both M and Tr were found to be the two most important factors associated with workers' thermal hazard. Therefore, two effective control strategies were suggested, including reducing workloads of workers and reducing radiant heat transmitting from furnaces to workplace environments. Conclusions: The approach developed in the present study would be beneficial to many other industries for initiating strategies to avert the thermal hazard imposed on workers.(J Occup Health 2014; 56: 505–510)
机译:目标:这项研究的目的是开发方法,以监测和优先考虑与钢铁铸造行业工人的热应力相关的因素,并最终制定有效的控制策略。方法:整个研究是在两个钢铁铸造厂和两个钢铁铸造厂的炉膛区域完成的,那里的空气温度(T a ),辐射温度(T r ) ,在两个连续的工作周期内连续测量风速(V a )和水蒸气分压(P a )。同时,还测量了炉区内所有工人的代谢率(M)。结果:使用WBGT作为筛选目的的指标,我们的结果表明,两种铸造厂的所有炉区工人都可能遭受严重的热应力。从生理学的角度,进一步采用了ISO 7933提出的预测热应变(PHS)模型进行详细分析。通过蒙特卡罗模拟和敏感性分析,发现M和T r 是与工人热危害相关的两个最重要的因素。因此,提出了两种有效的控制策略,包括减少工人的工作量和减少从炉子到工作环境的辐射热。结论:本研究中开发的方法将有利于其他许多行业采取措施来避免对工人造成热危害的策略。(J Occup Health 2014; 56:505-510)

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