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Risk Analysis of Mine Safety System Based on Brittle Relational Entropy

机译:基于脆性关系熵的矿山安全系统风险分析

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Mine safety system is an extremely complicated system, which taking on the typically non-linear characteristics and involving lots of uncertain factors. In this paper, the theory of brittleness was applied to analyze brittle relation between accident and mine safety production system, and a new accident analysis model based on brittle relational entropy was proposed. Finally, on the basis of data from working fields and investigation results, taking Z coalmine as example, the analysis was carried out. The results show that in Z coalmine, the main brittle influence on its safety system is the working environment and geological condition. Also, the results indicate operations management subsystem can provide more room for controlling the occurrences of mine accidents. The practice proves that brittle relational analysis is an effective approach to making clear of the state of mine safety and keeping accidents away in time by taking corresponding measures.
机译:矿山安全系统是一个非常复杂的系统,具有典型的非线性特征并涉及许多不确定因素。本文运用脆性理论对事故与矿山安全生产系统之间的脆性关系进行分析,提出了一种基于脆性关系熵的事故分析模型。最后,根据工作现场的数据和调查结果,以Z煤矿为例进行了分析。结果表明,在Z煤矿中,对其安全系统的主要脆性影响是工作环境和地质条件。结果还表明,运营管理子系统可以为控制矿井事故的发生提供更多的空间。实践证明,脆性关系分析是通过采取相应措施,明确矿山安全状况,及时预防事故的有效方法。

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