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| Quantitative evaluation and application of mine structure in Xinyuan Coal Mine |
| Chen Zhenning1,2,3 |
1. Key Laboratory of Coalbed Methane Resources and Accumulation Process, Ministry of Education, China University of Mining and Technology, Xuzhou 221008, China; 2.School of Resources and Earth Sciences,
China University of Mining and Technology, Xuzhou 221116, China; 3.Jiangsu Coal Geology Bureau,
General Administration of Coal Geology, Nanjing 210046, China |
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Abstract According to the geological data of Xinyuan Coal Mine in the northeastern margin of Qinshui Basin, a comprehensive index model of mine structural complexity was constructed. Based on the fault and fold structure data, the fractal dimension value was calculated by the grid covering method, and the structural complexity zoning map was generated. The results showed that the structural complex area was distributed in NW-SE direction, concentrated in the northwest and central east of the well field ; the fractal dimension value of fault network could comprehensively reflect the influence of the number, length and combination type of faults on the complexity. The overall structural type of the mine was simple, but the complex area needed to optimize the layout of the mining area. The research results provided a quantitative basis for structural control mining and guided the mine to extend mining to the southern simple area.
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| [ 1 ] 王桂梁,龙荣生,徐凤银,等. 矿井构造预测[ M ]. 北京:煤炭工业出版社,1993.
[ 2 ] 万天丰. 中国大地构造纲要[ M ]. 北京:地质出版社,2004.
[ 3 ] 甘昶春,胡隽秋. 新疆煤炭开发与煤化工产业科学发展研究[ J ]. 煤炭经济研究,2012,32( 10 ):9 - 13,25.
[ 4 ] Harding T P, Lowell J D.Structural styles, their plate tectonic hab-
itats and hydrocarbon traps83in petroleum provinces[ J ]. Bull, AAPG, 1979, 63: 1 016 - 1 058.
[ 5 ] 曹代勇,琚宜文,夏玉成,等. 中国煤田构造研究的史实概览、主要进展与前景展望[ J ]. 煤田地质与勘探,2025,53( 5 ):1 - 23.
[ 6 ] 朱利岗,王安民,宋忠亮,等. 蒋庄煤矿北十采区构造定量评价研究[ J/OL ]. 煤炭科学技术,1-11[2025-12-05]. https://link.cnki.net/urlid/11.2402.TD.20250711.1649.002..
[ 7 ] 刘令生. 基于分形理论的矿区构造定量分析及评价[ J ]. 华北科技学院学报,2018,15( 3 ):1 - 9.
[ 8 ] 张建群,王 联,杨天亮,等. 分形理论在祁南煤矿构造复杂程度评价中的应用[ C ]//中国煤炭学会煤矿建设与岩土工程专业委员会.矿山建设工程新进展——2007全国矿山建设学术会议文集,2007.
[ 9 ] 陈江峰,胡 诚. 煤中断裂分布的分形特征[ J ]. 煤田地质与勘探,1999( 1 ):8 - 10.
[ 10 ] 徐凤银,朱兴珊,王桂梁. 矿井构造预测与评价的发展途径[ J ]. 中国矿业大学学报,1995( 3 ):68 - 74.
[ 11 ] 夏玉成,樊怀仁. 矿井构造定量评价的原则和方法[ J ]. 西安矿业学院学报,1998( 4 ):323 - 327.
[ 12 ] 汪吉林,姜 波,李耀民,等. 鲍店煤矿矿井构造复杂程度评价[ J ]. 中国煤炭地质,2008( 10 ):80 - 82.
[ 13 ] 曾家瑶,白利娜. 分形理论在土城向斜构造复杂程度评价中的应用[ J ]. 煤炭技术,2019,38( 5 ):60 - 61.
[ 14 ] 谢焱石,谭凯旋. 断裂构造的分形研究及其地质应用[ J ]. 地质地球化学,2002( 1 ):71 - 77.
[ 15 ] 王建国,王海凤,刘见宝. 矿井断层复杂程度系数的几何方法评价[ J ]. 煤炭科学技术,2015,43( 5 ):115 - 117.
[ 16 ] 施龙青,赵 威,刘天浩,等. 煤矿井田构造复杂程度定量评价研究[ J ]. 煤炭工程,2022,54( 8 ):142 - 148.
[ 17 ] 王自国,朱利岗,王安民,等. 蒋庄煤矿北十采区3号煤层构造复杂程度评价[ J ]. 中国煤炭地质,2023,35( 11 ):31 - 38,30.
[ 18 ] 石 腾,杜冬冬. 三维地震勘探技术在沙梁煤矿的应用实例[ J ]. 内蒙古石油化工,2025,5( 6 ):81 - 86.
[ 19 ] 陈铭帅. 三维数据场可视化技术在海洋石油地质勘探开发中应用[ J ]. 石化技术,2025,32( 6 ):157 - 159.
[ 20 ] 闫佳佳,刘 蓓,赵 亮,等. 深部金属矿产资源勘查技术方法与研究分析[ J ]. 西部资源,2024( 4 ):116 - 120.
[ 21 ] 柴正良. 地质勘探技术在探矿工程中的应用及安全问题[ J ]. 冶金管理,2023( 21 ):66 - 67.
[ 22 ] 彭学慧,陈 功,伍贵华. 复杂地质条件下工程地质勘察技术优化与实践应用[ C ]//中国国土.
[ 23 ] 经济学会,河北大学.“产业链空间配置优化与国土空间规划创新研讨会”暨第三届中国国土经济学会国土空间规划学术年会论文集(一),2025. |
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