数据驱动的煤矿环境安全风险评价系统研究

IF 4.7 1区 工程技术 Q1 ENGINEERING, INDUSTRIAL Safety Science Pub Date : 2024-11-29 DOI:10.1016/j.ssci.2024.106727
Cheng Lu , Shuang Li , Kun Xu , Yi Zhang
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引用次数: 0

摘要

煤矿作业是世界上最危险的活动之一,如何控制煤矿环境安全事故已成为一个新的挑战,迫切需要一个客观、准确、全面、动态的评价体系来评价煤矿环境安全风险。构建数据驱动的煤矿环境安全风险评价体系,指导煤矿在不同环境条件下实现环境安全风险评价:构建煤矿环境安全风险评价指标体系和阈值规则;通过专家先验知识、先进传感器、现场技术,获取专家经验数据、客观监测数据、主观报告数据等多源异构数据;通过模糊语言转换、范围标准化和基于数据特征的阈值规则转换消除数据异质性;通过FAHP、CRITIC、欧氏距离函数、基于端点混合三角白化权函数的灰色聚类模型、灰色聚类水平-风险转换值模型(GCL-RCV模型)、实时风险状态加权模型和线性加权模型对多源异构数据进行集成。通过案例分析,验证了评估系统的准确性、实时性和有效性。该系统实现了煤矿环境安全风险的动态实时评估,关键风险的识别和控制,具有良好的工业应用前景。这对煤矿井下开采过程中的风险控制具有重要意义,有利于煤矿井下的可持续发展。
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Research on data-driven coal mine environmental safety risk assessment system
Coal mining operations are one of the most dangerous activities in the world, how to control coal mine environmental safety accidents has become a new challenge, there is an urgent need for an objective, accurate, comprehensive, and dynamic assessment system to assess the coal mine environmental safety risk. The paper constructs a data-driven coal mine environmental safety risk assessment system to guide coal mines under different environmental conditions to achieve environmental safety risk assessment: Constructing coal mine environmental safety risk assessment indicator system and threshold rules; Obtaining multi-source heterogeneous data such as expert experience data, objective monitoring data, and subjective reported data through expert prior knowledge, advanced sensors, and on-site technology; Eliminating data heterogeneity through fuzzy language transformation, range standardization, and threshold rule transformation based on data characteristics; Integrating multi source heterogeneous data through FAHP, CRITIC, Euclidean distance function, Grey cluster model based on end-point mixed triangular whitenization weight function, Grey clustering level − risk conversion value model (GCL-RCV model), Real-time risk status weighting model, and Linear weighting model. The accuracy, real-time performance, and effectiveness of the assessment system have been verified through case study. The system has achieved dynamic real-time assessment of coal mine environmental safety risk, identified and controlled critical risk, and has good industrial application prospect. It is of great significance for risk control in the mining process of underground coal mine and beneficial for the sustainable development of underground coal mine.
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来源期刊
Safety Science
Safety Science 管理科学-工程:工业
CiteScore
13.00
自引率
9.80%
发文量
335
审稿时长
53 days
期刊介绍: Safety Science is multidisciplinary. Its contributors and its audience range from social scientists to engineers. The journal covers the physics and engineering of safety; its social, policy and organizational aspects; the assessment, management and communication of risks; the effectiveness of control and management techniques for safety; standardization, legislation, inspection, insurance, costing aspects, human behavior and safety and the like. Papers addressing the interfaces between technology, people and organizations are especially welcome.
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