• Chinese Core Periodicals
  • Chinese Core Journals of Science and Technology
  • RCCSE Chinese Authoritative Academic Journals
ZHANG Peisen, AN Yufeng, WU Shouxin, ZHAO Yapeng, WEI Jie, WANG Wenmiao. Water Inrush Laws of Floor Failure in Coal Seam with Pressure Mining[J]. Safety in Coal Mines, 2019, 50(2): 25-29.
Citation: ZHANG Peisen, AN Yufeng, WU Shouxin, ZHAO Yapeng, WEI Jie, WANG Wenmiao. Water Inrush Laws of Floor Failure in Coal Seam with Pressure Mining[J]. Safety in Coal Mines, 2019, 50(2): 25-29.

Water Inrush Laws of Floor Failure in Coal Seam with Pressure Mining

More Information
  • Published Date: February 19, 2019
  • Aiming at the present situation that the pressure water threat brought by the continuous deepening of mining depth increases further, according to the specific geological conditions, the lifting of confined water and floor failure in different stages of exploitation were observed by using similar material simulation tests and self-designed confined water lifting simulation device. From the beginning of mining to the time of approaching fault, the laws of floor from slight damage to final water-conducting formation are deeply studied. The internal development of cracks was studied by the method of stratified dismantling of the model.
  • [1]
    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.
    [2]
    胡涛,侯公羽.综放承压水上开采底板破坏规律研究[J].煤炭技术,2016,35(12):24-26.
    [3]
    高玉兵,刘世奇,吕斌,等.基于微观裂隙扩张的采场底板突水机理研究[J].采矿与安全工程学报,2016, 33(4):624-629.
    [4]
    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.
    [5]
    尹尚先.煤层底板突水模式及机理研究[J].西安科技大学学报,2009,29(6):661-665.
    [6]
    李利平,李术才,石少帅,等.基于应力-渗流-损伤耦合效应的断层活化突水机制研究[J].岩石力学与工程学报,2011,30(S1):3295-3304.
    [7]
    冯梅梅,茅献彪,白海波,等.承压水上开采煤层底板隔水层裂隙演化规律的试验研究[J].岩石力学与工程学报,2009,28(2):336-341.
    [8]
    赵亚鹏,张培森,武守鑫.逆断层两盘开采诱发顶底板及断层应力变化规律的试验研究[J].煤矿安全,2017,48(5):53-56.
    [9]
    李振峰.煤层覆岩破坏特征对承压水上安全开采的影响[J].煤矿安全,2015,46(11):196-199.
    [10]
    张金才,刘天泉.论煤层底板采动裂隙带的深度及分布特征[J].煤炭学报,1990,15(2):46-55.
    [11]
    熊祖强,王晓蕾.承压水上工作面破坏及裂隙演化相似模拟试验[J].地下空间与工程学报,2014,10(5):1114-1120.
    [12]
    姜耀东,吕玉凯,赵毅鑫.承压水上开采工作面底板破坏规律相似模拟试验[J].岩石力学与工程学报,2011,30(8):1571-1578.
    [13]
    郭惟嘉,刘杨贤.底板突水系数概念及其应用[J].河北煤炭,1989(2):56-60.
    [14]
    马锋凯,肖洪天.底板导水裂隙带中含承压水裂隙的力学特性[J].地质与勘探,2017,53(5):1010.
    [15]
    张士川,郭惟嘉,孙文斌,等.高水压底板突水通道形成与演化过程[J].山东科技大学学报(自然科学版),2015,34(2):25-29.
    [16]
    钱鸣高,缪协兴,许家林.岩层控制中的关键层理论研究[J].煤炭学报,1996,21(3):2-7.
    [17]
    翟晓荣,吴基文,张红梅,等.基于流固耦合的深部煤层采动底板突水机理研究[J].煤炭科学技术,2017, 45(6):170-175.
    [18]
    张培森,武守鑫,赵亚鹏.多效应场作用下逆断层突水主控因素研究[J].矿业研究与开发,2017,37(4):50-53.
    [19]
    李振华,周甲富,张帅龙.带压开采工作面底板突水规律相似模拟试验[J].河南理工大学学报,2016,35(4):458-463.
    [20]
    黎良杰,钱鸣高,殷有泉.采场底板突水相似材料模拟研究[J].煤田地质与勘探,1997,25(1):35-38.
    [21]
    孙文斌,张士川,朱磊.深部采动高承压水完整底板突水通道形成模式分析[J].矿业安全与环保,2016, 43(3):100-102.
  • Related Articles

    [1]ZHANG Yang, XING Luyi, WANG Sheng. Research on On-line Monitoring of Lateral Coal Stress and Deformation and Reasonable Delay Time of Gob-side Entry Driving in Deep Mine[J]. Safety in Coal Mines, 2020, 51(7): 228-233.
    [2]XU Hongwei, WU Rui, WANG Hui, LUO Lixia, LIU Guoping. Stress Distribution and Deformation and Failure Characteristics of Surrounding Rock in Roadway Pre-filled Mining Without Coal Pillar[J]. Safety in Coal Mines, 2018, 49(7): 216-219.
    [3]ZHANG Nianchao, SUN Yuantian, CAI Shenghai, HOU Baoquan, YANG Li, QU Kongguan. Research on Coal Pillar Size and Supporting Technology Under Based on Strength Theory[J]. Safety in Coal Mines, 2016, 47(6): 209-213.
    [4]XU Jun, SHEN Wenlong, LI Sichao, YAN Dong. Stress Field and Displacement Field of Gob-side Entry Driving Surrounding Rock in Residual Pillar[J]. Safety in Coal Mines, 2015, 46(12): 38-41.
    [5]SUN Haiyang, WANG Lianguo, ZHANG Jihua. Parameter Optimization for Remained Coal Pillar Size of Gob-side Entry Driving[J]. Safety in Coal Mines, 2015, 46(6): 204-207.
    [6]LU Wenbin, YANG Yongjie, HAO Yirui. Small Coal Pillar Leaving and Roadway Support Design for Gob-side Entry Driving at Deep Isolated Island Coal Face[J]. Safety in Coal Mines, 2015, 46(5): 208-211.
    [7]WANG Quan, TU Shihao, YUAN Yong, TU Hongsheng, WANG Chen, FENG Yufeng. Determination of the Reasonable Chain Pillars Size of Isolated Island Fully-mechanized Caving Face[J]. Safety in Coal Mines, 2014, 45(1): 36-39.
    [8]WANG Zhong-kui, HE Jie. Control Technology of Surrounding Rock Deformation by Tunneling Gateway Along Gob With Small Coal Pillars in Geological Structural Belt[J]. Safety in Coal Mines, 2013, 44(8): 45-47.
    [9]ZHOU Xian, ZHU Shou-song. Gob-side Entry Driving Position of Small Pillar and Support Design[J]. Safety in Coal Mines, 2012, 43(11): 136-138.
    [10]ZHANG Shuan-cai. 强矿压小煤柱分层掘进巷道高强联合支护技术[J]. Safety in Coal Mines, 2012, 43(10): 86-88.
  • Cited by

    Periodical cited type(13)

    1. 李志华,耿倩,杨科,邹恩隆,何祥. 综采工作面垮落带注浆充填开采覆岩采动裂隙定量表征试验研究. 中国矿业. 2024(02): 159-167 .
    2. 亢军. 厚冲击层薄基岩下工作面支架额定工作阻力研究. 煤矿机电. 2023(01): 56-59 .
    3. 解建,许大强,胡伟,张培森. 工作面上覆松散含水层注浆改造及其效果检验. 煤矿安全. 2023(10): 168-175 . 本站查看
    4. 程桦,张亮亮,姚直书,彭世龙,郭龙辉. 厚松散层薄基岩非对称开采井筒偏斜机理. 煤炭学报. 2022(01): 102-114 .
    5. 高永格,张强,牛矗,张开. 沿空留巷顶板覆岩二次采动裂隙实测分析. 煤炭科学技术. 2022(03): 78-84 .
    6. 石磊. 辛置矿顶板离层水突涌机理及防治技术研究. 山东煤炭科技. 2022(08): 167-170 .
    7. 赵光荣,郝燕奎,申文彪,郑帅. 实施安全离层注浆的覆岩离层位置初探. 内蒙古煤炭经济. 2022(15): 41-43 .
    8. 彭世龙,程桦,姚直书,荣传新,蔡海兵,张亮亮. 厚松散层底含直覆薄基岩开采地表沉陷预计及特征研究. 煤炭学报. 2022(12): 4417-4430 .
    9. 吴建兰. 煤矿断层采动作用模拟分析. 山西冶金. 2021(02): 72-73+86 .
    10. 武俊州. 3116工作面覆岩运动规律及离层充填注浆技术研究. 山东煤炭科技. 2021(05): 63-65+69+72 .
    11. 姜文浩. 薄基岩工作面顶板精细化探查技术研究. 煤炭科技. 2021(03): 110-113 .
    12. 陈正华,徐洪,曾亮,杨富军. 倾斜煤层采动条件下覆岩移动规律研究. 地下水. 2021(06): 197-199+272 .
    13. 刘剑,屈井丰. 神东矿区厚松散层下采煤沉陷相似材料实验研究. 煤炭工程. 2021(S1): 76-80 .

    Other cited types(9)

Catalog

    Article views (136) PDF downloads (0) Cited by(22)

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return