A.S. Belikov, O.V. Tretyakov, Yev.S. Hryhorieva, B.K. Harmash, S. Ragimov
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引用次数: 0
Abstract
Problem statement. The issue of studying the working conditions of workers with increased heat exposure is considered. Diseases provoked by harmful working conditions have a rather long incubation period, so their manifestation is not always easy to recognize and there are difficulties in establishing the root cause of occupational disease. The purpose of the article. Development and implementation of risk assessment methodology based on the joint action of harmful and hazardous industrial factors and regularities of their intensity decrease with distance from the source. Methodology. The impact of occupational and heterogeneous industrial factors on the employee's health, taking into account the time of action and the impact of their joint action in quantitative form, can be fairly objectively assessed on the basis of the Weber-Fechner law through the calculation of the integral index of potential risk. Structural analysis was used to determine the structure and causes of occupational diseases. Correlation analysis was carried out to find out the nature of relationships between the levels of influence of factors of the industrial environment to assess the conditions and nature of labor at the workplaces of workers, at whose workplaces the increased thermal stress was installed. Probabilistic-statistical methods were used for data processing - to determine the algorithm of transformation of environmental parameters into an indicator of occupational risk for workers with harmful working conditions. Development of a model for determining the zones of transformation of occupational risk through mutual influence on the industrial risk of the processing of research results needed the application of formalization methods. A software system for the formation of aggregated for multivariate analysis of information was used, which made it possible to build a three-dimensional model of changes in the values of the indicator of occupational risk in the space between the workplaces of employees located in the welding department. Scientific novelty. The applied risk-oriented approach using the methods of occupational and industrial risk assessment for electric welders' workplaces allows to take into account the harm to the worker's organism from the factors of the industrial environment. The established regularities allow to determine the zones of transformation of occupational risk through mutual influence into production risk, which is the justification of measures to reduce injuries and occupational diseases. Practical value. On the example of labor conditions at the workplaces of electric welders the methodology of risk assessment is developed and tested taking into account the joint action of harmful and hazardous industrial factors and regularities of their intensity decrease with distance from the source. The given risk-oriented approach allows to fulfill all the requirements and recommendations set forth in ISO 45001: its application to the working conditions of workers of hot professions (welders) allows to carry out a quantitative assessment of occupational and industrial risk at their workplaces, in particular for preparation for certification under ISO 45001. Conclusions. An effective tool for theoretical analysis of pollution zones formed during an extreme situation at gas stations has been created. The results of computational experiments are presented. The methodology of risk assessment based on the fundamental Weber-Fechner law for objective assessment of the impact of occupational and heterogeneous industrial factors on the employee's health in quantitative form through the calculation of the integral index (potential risk), which will allow to assess the working conditions at workplaces and objectively determine the class of working conditions, has been developed and implemented.
问题陈述。本文探讨了如何研究高温暴露工人的工作条件问题。有害工作条件引发的疾病具有相当长的潜伏期,因此其表现并不总是容易识别,在确定职业病的根本原因方面也存在困难。文章的目的根据有害和危险工业因素的共同作用及其强度随与源头的距离减小的规律性,制定和实施风险评估方法。方法。根据韦伯-费希纳(Weber-Fechner)定律,通过计算潜在风险的综合指数,可以相当客观地评估职业和异质工业因素对雇员健康的影响,同时考虑到其作用时间和联合作用的定量影响。结构分析用于确定职业病的结构和原因。进行了相关性分析,以找出工业环境因素影响程度之间的关系性质,从而评估工人工作场所的劳动条件和性质,这些工人的工作场所安装了热应力增加装置。使用概率统计方法进行数据处理--确定将环境参数转化为对工作条件有害的工人的职业风险指标的算法。通过对研究成果处理过程中的工业风险的相互影响,建立一个确定职业风险转化区的模型,这需要应用正规化方法。我们使用了一个用于多变量信息分析的汇总软件系统,该系统使得建立焊接部门员工工作场所之间职业风险指标值变化的三维模型成为可能。科学新颖性。采用电焊工工作场所职业和工业风险评估方法的风险导向方法,可以考虑到工业环境因素对工人机体的危害。根据已确定的规律,可以确定职业风险通过相互影响转化为生产风险的区域,这也是采取措施减少工伤和职业病的理由。实用价值。以电焊工工作场所的劳动条件为例,考虑到有害和危险工业因素的共同作用,以及这些因素的强度随与源头的距离减小而减小的规律性,制定并测试了风险评估方法。这种以风险为导向的方法可以满足 ISO 45001 规定的所有要求和建议:将其应用于高温职业(电焊工)工人的工作条件,可以对其工作场所的职业和工业风险进行定量评估,特别是为 ISO 45001 认证做准备。结论为对加油站极端情况下形成的污染区进行理论分析创建了一个有效工具。介绍了计算实验的结果。基于韦伯-费希纳基本定律的风险评估方法,通过计算积分指数(潜在风险),以定量形式客观评估职业因素和异质工业因素对员工健康的影响,从而评估工作场所的工作条件,客观确定工作条件的等级。