Assessing construction risk factors and ensuring safety

Nino Ratiani, N. Ilias, N. Machavariani, Nana Razmadze
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Abstract

Construction is one of the most dangerous industries, which in physical terms is associated with the highest load. Trauma and accident statistics are high. Due to the multidisciplinary nature of employees in the construction sector, considering the impact of harmful and dangerous factors and difficulties of operating construction and transport equipment, construction is one of the most dangerous areas. During the 2020-2021 pandemic, various problems arose in the construction sector. The problem of the construction industry, delays caused by pandemics, the main causes of safety breaches, hazard detection, risk management outcomes are discussed in the article and recommendations are given to improve them. Research methods: Analysis of the theoretical and practical experience of existing means of occupational safety, working on statistical data on traumas and accidents, develop methods for identifying hazards, and assessing risks based on specific examples. Based on theoretical studies and analysis of existing conditions, measures have been developed to improve occupational safety. The importance of the mechanism for predicting unforeseen delays in the construction sector, the causeand-effect relationship between high statistics of injuries and accidents in conditions of excessive working hours. The complexity of the construction field is presented and analyzed with all clarity, taking into account the multitude of existing risk factors, the stages of risk assessment and management are schematically depicted, the criteria for determining the probability of events.
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评估施工风险因素,确保安全
建筑业是最危险的行业之一,从物理角度来看,它与最高的负荷有关。创伤和事故的统计数字很高。由于建筑业从业人员的多学科性质,考虑到有害和危险因素的影响以及操作施工和运输设备的难度,建筑业是最危险的领域之一。在2020-2021年大流行期间,建筑行业出现了各种问题。本文讨论了建筑业的问题、流行病造成的延误、安全违规的主要原因、危害检测、风险管理结果,并提出了改进这些问题的建议。研究方法:分析现有职业安全手段的理论和实践经验,研究创伤和事故的统计数据,制定识别危害的方法,并根据具体实例进行风险评估。在理论研究和现状分析的基础上,提出了提高职业安全的措施。预测建筑部门不可预见的延误的机制的重要性,在超长工作时间条件下的高伤害和事故统计数字之间的因果关系。考虑到众多现有的风险因素,对建筑领域的复杂性进行了清晰的呈现和分析,并对风险评估和管理的阶段进行了图解描述,并给出了确定事件概率的标准。
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