• Chinese Core Periodicals
  • Chinese Core Journals of Science and Technology
  • RCCSE Chinese Authoritative Academic Journals
SUN Yanan, ZHANG Peisen, YAN Wei, ZHAO Yapeng, YAN Fenqian, WU Junda. Experimental Study on Overburden Movement and Stress Variation of Coal Seam Mining with Associated Step Faults[J]. Safety in Coal Mines, 2020, 51(7): 48-54,60.
Citation: SUN Yanan, ZHANG Peisen, YAN Wei, ZHAO Yapeng, YAN Fenqian, WU Junda. Experimental Study on Overburden Movement and Stress Variation of Coal Seam Mining with Associated Step Faults[J]. Safety in Coal Mines, 2020, 51(7): 48-54,60.

Experimental Study on Overburden Movement and Stress Variation of Coal Seam Mining with Associated Step Faults

More Information
  • Published Date: July 19, 2020
  • In order to study the special case of down-going coal seam mining accompanied by step faults, the upper and lower working faces and step faults of Chaili Coal Mine are used here as research objects. Overlapping rock movements and their correlation during the close-coal mining process are simulated by similar material simulation tests. The stress variation law was studied, and the research results show that: there is a crack structure and three broken forms in the overburden in single coal seam mining; there is a significant difference between “trapezoidal space” and “triangular space” in the overburden mining in the upper and lower coal seams; coal mining as a whole has the characteristics of “falling with digging, without obvious cycle to step, and difficult to form a beam structure”; and when there is a fault, the transmission of pressure is often affected by the stress barrier of the fault, and the closer it is to the roof, the higher levels of stress concentration.
  • [1]
    Jixiong Zhang, Qiang Zhang, Spearing A J S(Sam), et al. Green coal mining technique integrating mining-dressing-gas draining-backfilling-mining[J]. International Journal of Mining Science and Technology, 2016, 27(1): 17-27.
    [2]
    Peng Syd S, Feng Du, Jingyi Cheng, et al. Automation in u.s. longwall coal mining: a state-of-the-art review [J]. International Journal of Mining Science and Technology, 2019, 29(1): 151-159.
    [3]
    Guofa Wang, Yongxiang Xu, Huaiwei Ren. Intelligent and ecological coal mining as well as clean utilization technology in china: review and prospects [J]. International Journal of Mining Science and Technology, 2019, 29(2): 15-23.
    [4]
    刘增辉,娄嵩,孟祥瑞,等.近距离煤层开采对卸压区采场围岩应力演化过程研究[J].采矿与安全工程学报,2016,33(1):102-108.
    [5]
    彭高友,高明忠,吕有厂,等.深部近距离煤层群采动力学行为探索[J].煤炭学报,2019,44(7):1971.
    [6]
    黄万朋,邢文彬,郑永胜,等.近距离煤层上行开采巷道合理布局研究[J].岩石力学与工程学报,2017,36(12):3028-3039.
    [7]
    杜计平,张瑾.特深矿井三种应力状态下开拓巷道变形破坏规律与围岩控制对策[J].煤炭科技,2016(1):1-3.
    [8]
    钱鸣高,许家林.煤炭开采与岩层运动[J].煤炭学报,2019,44(4):973-984.
    [9]
    索永录,商铁林,郑勇,等.极近距离煤层群下层煤工作面巷道合理布置位置数值模拟[J].煤炭学报,2013,38(S2):277-282.
    [10]
    孟浩.近距离煤层群下位煤层巷道布置优化研究[J].煤炭科学技术,2016,44(12):44-50.
    [11]
    徐永圻.煤矿开采(修订版)[M].徐州:中国矿业大学出版社,1999.
    [12]
    任德惠.井下矿山压力与控制[M].重庆:重庆大学出版社,1990.
    [13]
    段晓博.极近距离煤层回采巷道布置方式及围岩控制技术研究[D].太原:太原理工大学,2013.
    [14]
    岳军文.近距离煤层群上行开采矿压多元控制技术[J].煤矿安全,2016,47(8):86-89.
    [15]
    张宏伟,韩军,海立鑫,等.近距煤层群上行开采技术研究[J].采矿与安全工程学报,2013,30(1):63-67.
    [16]
    黄鹏,李百宜,肖猛,等.近距离煤层充填上行开采临界充实率设计[J].采矿与安全工程学报,2016,33(4):597-603.
    [17]
    朱砚秋,杨力.采动诱发断层活化规律的试验研究[J].煤矿安全,2017,48(4):29-31.
    [18]
    朱光丽,张文泉,张贵彬,等.采动诱发断层活化导水试验研究[J].岩土力学,2017,38(11):3163-3172.
    [19]
    郭惟嘉,赵金海,尹立明,等.断层突水非线性渗流-应力耦合研究[J].山东科技大学学报(自然科学版),2017,36(6):1-7.
    [20]
    李海燕,张红军,李术才,等.断层滞后型突水渗-流转化机制及数值模拟研究[J].采矿与安全工程学报,2017,34(2):323-329.
    [21]
    武强,朱斌,刘守强.矿井断裂构造带滞后突水的流-固耦合模拟方法分析与滞后时间确定[J].岩石力学与工程学报,2011,30(1):93-104.
    [22]
    史莉红,武守鑫,刘冲,等.断层带承压水导升模拟试验系统研制与应用[J].煤炭科学技术,2019,47(7):136-141.
    [23]
    张培森,颜伟,张文泉,等.固液耦合模式下含断层缺陷煤层回采诱发底板损伤及断层活化突水机制研究[J].岩土工程学报,2016,38(5):877-889.
    [24]
    张培森,杨健,王明辉,等.固液耦合模式下采动诱发断层界面应力变化规律的模拟研究[J].中国矿业,2014,23(4):84-89.
    [25]
    张培森,杨健,王明辉,等.固液耦合模式下采动诱发断层活化及突水的试验研究[J].煤矿安全,2014,45(3):24-27.
    [26]
    张培森,李凯,王浩,等.逆断层两盘依次回采诱发其应力变化规律的试验分析[J].煤矿安全,2016,47(11):53-56.
    [27]
    于斌,朱卫兵,李竹,等.特厚煤层开采远场覆岩结构失稳机理[J].煤炭学报,2018,43(9):2398-2407.
    [28]
    黄庆享,周金龙,马龙涛,等.近浅埋煤层大采高工作面双关键层结构分析[J].煤炭学报,2017,42(10):2504-2510.
    [29]
    韩红凯,王晓振,许家林,等.覆岩关键层结构失稳后的运动特征与“再稳定”条件研究[J].采矿与安全工程学报,2018,35(4):734-741.
  • Related Articles

    [1]WANG Haichun, LEI Dongji, DAI Zhenhua, QIN Jie. Study on stress change law of coal body permeability improvement by mechanical reaming[J]. Safety in Coal Mines, 2024, 55(1): 28-33. DOI: 10.13347/j.cnki.mkaq.20230409
    [2]WANG Wenmiao, ZHANG Peisen, WEI Jie, AN Yufeng. Simulation Study on Stress Distribution and Failure Characteristics of Soft-hard-soft Interbedded Composite Floor in Deep Seam Mining[J]. Safety in Coal Mines, 2019, 50(2): 57-60,66.
    [3]HAN Wandong, CHEN Ran. Study on Stress Change and Stability of Dump Slope Under Rainfall[J]. Safety in Coal Mines, 2018, 49(8): 262-265.
    [4]ZHAO Yapeng, ZHANG Peisen, WU Shouxin. Experimental Study on Stress Change Laws of Roof and Floor and Fault Induced by Two Panels Mining of Reverse Fault[J]. Safety in Coal Mines, 2017, 48(5): 53-56,60.
    [5]WANG Jun, NING Jianguo, LIU Xuesheng, GU Qingheng. Numerical Simulation of Overburden Failure in Gob Under Tectonic Stress[J]. Safety in Coal Mines, 2017, 48(1): 183-186.
    [6]ZHANG Peisen, LI Kai, WANG Hao, MIAO Wang, ZHAO Shijun, KAN Zhonghui. Experimental Analysis of Stress Change Induced by Reverse Fault Two Plates Mining in Sequence[J]. Safety in Coal Mines, 2016, 47(11): 53-56.
    [7]ZHENG Chun-shan, XUE Jian-feng, YANG Wei, ZOU Quan-le, XU You-ping. Variation Laws of Stress and Displacement During Bedding Drilling Construction[J]. Safety in Coal Mines, 2013, 44(11): 148-151.
    [8]LI Cheng-cheng. Study on Change Laws of Pillar Mining Stress in Adjacent Goaf[J]. Safety in Coal Mines, 2013, 44(10): 48-51.
    [9]XU Hai-tao, LI Peng, TIAN Xiao, LIU Zheng-he. The Overburden Caving and Strata Stress Distribution Laws in Large Mining Height Fully-mechanized Mining Face[J]. Safety in Coal Mines, 2013, 44(8): 30-32.
    [10]YUAN Mei, WANG Zhen, LI Bo-bo, HE Ming-hua, MA Ke-wei. Experiments Study on the Briquette Permeability with Temperature and Effective Stress Change[J]. Safety in Coal Mines, 2012, 43(4): 8-11.

Catalog

    Article views (35) PDF downloads (0) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return