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| Research on construction method and application of mine water disaster knowledge ontology |
| Li Zhen1, 2, Yue Jianhua2, Liu Xiaoning3, 4 |
| 1. Shanxi Coal Geological Geophysical Surveying and Mapping Institute Co., Ltd., Jinzhong 030600, China; 2. College of Resources and Earth Sciences, China University of Mining and Technology, Xuzhou 221116, China; 3. Safety Training Center of Shanxi Bureau of National Mine Safety Administration, Taiyuan 030000, China; 4. School of Mining Engineering, China University of Mining and Technology, Xuzhou 221116, China |
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Abstract With the continuous development and utilization of mineral resources, mine water disaster was widely concerned as a major threat to the safety of mining production . This study focused on the construction method and specific application of mine water disaster knowledge ontology, so as to realize the effective integration and intelligent processing of mine water disaster information, and provide scientific basis for mine water disaster prediction and management. The research analyzed the types, causes and evolution mechanisms of mine water disasters firstly, and clarified the application requirements of knowledge ontology in mine water disaster management. Secondly, combined with the actual geological data, the extraction of mine water disaster characteristic parameters was carried out, the basic framework of knowledge ontology was established, and the ontology modeling language was used to describe, and the mine water disaster knowledge ontology was constructed. At the same time, this study proposed ontology reasoning and cancellation logic methods to enhance the adaptive reasoning ability of knowledge. In order to verify the practicability and effectiveness of the ontology, a series of experiments were designed. By comparing and analyzing with the traditional methods, the results showed that the constructed knowledge ontology could accurately represent and reason the knowledge related to mine water disaster, and the accuracy of core reasoning and recognition reached 93 %, which achieved good prediction effect in practical mine applications. In addition, this study also developed a mine water disaster management decision support system based on knowledge ontology, which could provide intuitive data analysis results and operation suggestions for mine managers, and could be used as the research basis for the construction of knowledge graph. In summary, the mine water disaster knowledge ontology and its application system constructed in this study provided a new tool for mine safety management. It had the characteristics of combining theoretical research and engineering application, and had a positive regional impact on the safety production and management of local mining.
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| [ 1 ] 王 晶. 矿井地质防治水工作面临的问题及防治方法[ J ]. 山
西化工,2023,43( 7 ):159 - 160,170.
[ 2 ] 杨文凯,孙文洁,刘 阳. 我国矿井水害评价预测方法及其展望[ J ]. 煤炭技术,2019,38( 4 ):115 - 117.
[ 3 ] 刘 涛. 复合水害条件下矿井水害综合防治成功实践[ J ]. 内蒙古煤炭经济,2020( 2 ):154 - 155.
[ 4 ] 基于视觉计算的矿井水灾感知方法研究[ D ]. 北京:中国矿业大学( 北京 ),2020.
[ 5 ] Liu J, Zhao Y, Tan T, et al. Evolution and modeling of mine water inflow and hazard characteristics in southern coalfields of China: A case of Meitanba mine[ J ]. International Journal of Mining Science and Technology, 2022, 32( 3 ): 513 - 524.
[ 6 ] Identifying Water Contamination from Fossil Fuel Development U-
sing Geochemical and Isotopic Fingerprints[ D ]. Duke University, 2017.
[ 7 ] 杨 挺,李文忠,刘福锁,等. 矿井水害危险性多维评价方法[ J ]. 内蒙古煤炭经济,2021( 1 ):113 - 114.
[ 8 ] 冯远健. 矿井水处理技术及其综合应用[ J ]. 煤炭与化工,2016,39( 1 ):147 - 148,151,160.
[ 9 ] 陈红颖. 矿井突水水源判别研究现状与进展[ J ]. 内蒙古煤炭经济,2018( 8 ):20,30.
[ 10 ] 王 瑶,丁 华,李娟莉. 采煤机设计知识本体表示研究[ J ]. 机械设计与制造,2019( 3 ):5 - 7.
[ 11 ] 吴晓玉. 矿井水害的成因及其防治方法[ J ]. 科技创新与应用,2020( 1 ):131 - 132.
[ 12 ] 纪亚萍. 矿井水害事故的应急救援探析[ J ]. 科技与创新,2021( 20 ):10 - 11.
[ 13 ] 余 静. 矿井水害的类型划分和水文结构的模式研究[ J ]. 江西化工,2019( 6 ):143 - 145.
[ 14 ] 孙 肖. 矿井水害防治技术研究进展分析[ J ]. 能源与节能,2019( 4 ):130 - 131.
[ 15 ] 王 皓,董书宁,乔 伟,等. 矿井水害防控远程服务云平台构建与应用[ J ]. 煤田地质与勘探,2021,49( 1 ):208 - 216. |
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