大同矿区多煤层开采冲击地压机理与防治研究
详细信息    本馆镜像全文|  推荐本文 |  |   获取CNKI官网全文
摘要
大同矿区多煤层开采冲击地压显现规律的研究是该矿区煤矿安全开采和灾害防治的重要课题。本文通过对大同矿区煤峪口、同家梁、忻州窑等矿冲击地压事故的现场详细调研,结合理论分析、数值模拟研究、实验室实验及井下实测相结合的手段对大同矿区多煤层开采条件下冲击地压控制理论及技术进行了深入研究,系统分析了大同矿区冲击地压的显著特征,指出多煤层联合开采时下分层开采发生冲击概率大于上分层开采,靠近采空区一侧冲击地压产生频率和严重程度要高于实体煤一侧,且具有区域性以及连续性。实验室内岩石力学试验和冲击倾向性鉴定得出忻州窑、同家梁矿、煤峪口矿三矿的顶底板及煤岩冲击倾向性指标,提出了剩余能量释放速度指数来判断冲击倾向性判的新方法。同时,忻州窑矿地应力测最结果显示,大同矿区最大主应力为水平应力,水平应力大于垂直应力。针对忻州窑矿地质生产条件,结合地应力测量结果,利用大型有限差分软件FLAC3D对忻州窑矿11煤不同开采顺序及9煤与11煤夹层不同厚度等条件下的开采进行了数值模拟,分析了冲击地压发生机理。在忻州窑矿为了预防由于近距离煤层开采诱发的冲击地压,采用断顶爆破卸压措施,并对实施卸压爆破的工作面巷道进行压力监测,现场实施效果良好。
The study on the machanism of coal bumps during extraction of multiple coal seams in Datong coal mine area is an important issue on safe mining and disaster prevention. Based on the field survey on the bump accidents of Meiyukou coal mine, Tongjialiang coal mine and Xinzhouyao coal mine in Datong coal mine, the control theory and techniques of coal bumps during extraction multiple seam mining with theoretic analysis, numerical simulation research and laboratory tests were conducted. This paper systematically analysed the remarkable characteristics of coal bumps in Datong coal mine area as well. It is showed that the coal bump probability during the lower seam mining was larger than that of the higher seam mining. Meanwhile, the coal bump probability and seriousness of the side which was close to the goaf were higher than those of the side close to the coal mass. It is revealed that the coal bumps were regional and had continuity. The indicators of coal bump proneness of coal-rock were given through laboratory tests and bump proneness identification. Based on the results, the new method with the index of releasing speed of remaining energy to judge the bump proneness of was proposed. At the same time, the measurement results of in-situ stress in Xinzhouyao coal mine showed that maximum principle stress was the horizontal stress and the horizontal stress was higher than the vertical stress. Based on the geological production conditions and the in-situ stress measurement results, FLAC3D (Fast Lagrangian Analysis of Continua in3Dimensions) was employed to numerically simulate the mining of the11th coal seam in Xinzhouyao coal mine with different mining sequences and different thicknesses of the interlayer between the9th coal seam and the11th coal seam. The occurrence mechanism of coal bumps were analysed in the numerical simulation. To prevent the coal bumps induced by mining in Xinzhouyao coal mine, pressure releasing through breaking the roof were conduced in workface. Meanwhile, pressure releasing blasting technolgy was implemented and evaluated.
引文
1 姜耀东,赵毅鑫,刘文岗等.煤岩冲击失稳的机理和实验研究.北京:科学出版社,2009:1-7
    2 姜耀东,赵毅鑫,何满潮等.冲击地压机理的细观实验研究.岩石力学与工程学报,2007,26(5)901-907
    3 何满潮,谢和平,彭苏萍等.深部开采岩体力学研究[J].岩石力学与工程学报,2005,24(16):2803-2813
    4 赵毅鑫.煤矿冲击地压机理研究[博士学位论文].北京:中国矿业大学(北京),2006
    5 刘文岗.煤矿冲击地压机理的宏、细观试验研究[博士学位论文].北京:中国矿业大学(北京),2005
    6 祝捷. 吸附作用下含气煤体的本构方程与应用研究[博士学位论文].北京:中国矿业大学(北京),2008
    7 钱鸣高,刘听成.矿山压力及其控制.北京:煤炭工业出版社,1996
    8 赵本钧.冲击地压及其防治.北京:煤炭工业出版社,1995
    9 佩图霍夫HM.突出和冲击地压危险煤层的开采.煤炭工程师,1984(5):41-44
    10 唐春安.岩石破裂过程中的灾变.煤炭工业出版社.1993
    11 潘一山.冲击地压研究中的几个哲学问题.中国岩土.2000(1):60-64
    12 潘一山、李忠华、章梦涛等,我国冲击地压分布、类型、机理及防治研究,岩石力学与工程学报,2003,22(11):1844-1851
    13 Owen, M., Hudyma, M. and Potvin, Y. Risk analysis for mining induced seismicity.5th North American Rock Mechanics Symposium and the 17th Tunnelling Association of Canada Conference: NARMS-TAC 2002,Toronto/Ontario/Canada, July 2002,1079-1086
    14 章梦涛.我国冲击地压预测和防治.辽宁工程技术大学学报.2001(8):433-435
    15 窦林名,何学秋著.冲击矿压防治理论与技术.徐州:中国矿业大学出版社,2001
    16 李玉.煤、岩爆机理研究与非线性有限元模拟(博士论文).中国矿业大学.1992
    17 张万斌,吴耀昆,王淑坤.中国煤矿冲击地压预测和防治研究.矿山压力与顶板管理,1990(1):43-46
    18 煤炭部冲击地压科技情报分站.冲击地压机理研究与防治经验文集(全国冲击地压会议资料).1985
    19 何满潮,姜耀东,赵毅鑫等.复合型能量转化为中心的冲击地压控制理论.深部资源开采基础理论研究与工程实践.北京:科学出版社,2005:205-214
    20 窦林名,何学秋.冲击矿压防治理论与技术.徐州:中国矿业大学出版社,2001
    21 唐春安.岩石破裂过程中的灾变.煤炭工业出版社,1993
    22 李玉生,张万斌,王淑坤等.冲击矿压机理探讨.煤炭学报,1984,9(3):1-9
    23 张万斌,吴耀昆.王淑坤等.中国煤矿冲击地压预测和防治研究.矿山压与顶板管理,1990(1):43-46
    24 张万斌,吴耀昆.王淑坤等.找国冲击地压研究与防治的进展.煤炭学报,1992,17(3):27-35
    25 Singh, S.P.. Burst energy release index. Rock Mechanics and Rock Engineering,1988,21:149-155
    26 Tcsarika, D.R., Seymoura, J.B., Yanske, T.R.. Post-failure behaviour of two mine pillars confined with backfill. Int J Rock Mcch.Min Sci.2003.40:221-232
    27 Varley, F. D.. Outburst Control in Underground Coal Mines. In:Proceedings of the 5th International Conference on Ground Control in Mining, WVU, Morgantown. WV,1986,249-256
    28 Zhao, Y.X., Jiang. Y.D.. Acoustic emission and thermal infrared precursors associated with bump-prone coal failure. International Journal of Coal Geology.2010,83:11-20
    29 Medhurst, T.P., Brown, E.T.. A study of the mechanical behaviour of coal for pillar design. Int J Rock Mech Min Sci.1998,35:1087-1105
    30 Mohamed, K.M.. design considerations for longwall yield pillar stability. Doctoral dissertation, West Virginia University,2003,7-17
    31 Mohan, G. M., Sheorey, P.R., Kushwaha, A.. Numerical estimation of pillar strength in coal mines. Int J Rock Mech Min Sci.2001,38:1185-1192
    32 Mortazavi, A., Hassani, F.P., Shabani, M. A numerical investigation of rock pillar failure mechanism in underground openings. Computers and Geotechnics.2009,36:691-697
    33 Hongwei Wang, BrettA.Poulsen, BaotangShen, ShengXue, YaodongJiang. The influence of roadway backfill on coal pillar strength by numerical investigation. International Journal of Rock Mechanics & Mining Sciences.2010,48(3):443-450
    34玛夏庭,王泳熹.深部开采诱发的岩爆及其防治策略的研究进展.中国矿业,1993, 7(5):21-25
    35煤炭部冲击地压科技情报分站,冲击地压机理研究与防治经验文集(全国冲击地压会议资料).1935
    36尹光志,鲜学福,余立平等.地应力对冲击地服的影响及冲击危险区域评价的研究.煤炭学报,1997(2),132-136
    37徐曾和,章梦涛.冲击地压失稳理沦及其应用.第二届全国岩石动力学学术会议,1990. 10
    38周晓军,鲜学福.煤矿冲击地压机理与工程应用究的进展.重庆大学学报(自然科学版),1998,21(1):126-132
    39钱鸣高,刘听成.矿山压力及期控制.北京:煤炭I=业出版社,1996
    40赵本钧.冲击地压及其防治.北京:煤炭工业出版社,1995
    引布戎依诺.矿山压力和冲击地旅.北京:煤炭卜业出版社, 1985
    42佩图霍夫H.M..煤矿冲击地压.王佑安译.煤炭工业出版社,1980
    43陈国样.最大水平应力对冲击矿压的作川机制及其应及其应用研究[博士学位沦文].徐州:中国矿业大学,2009
    44潘一山.冲击地压发生和破坏过程研究[博士学位论文].清华大学,1999
    45陈学华,构造应力型冲击地压发生条件研究[博士学位论文].辽宁工程技术大学,2004
    46张玉祥,鲁庆明.煤柱冲击地压发生机理及控制.矿山压力与顶板管理,1997, (2): 78-80
    47徐思朋,钟卫平,贾风苏等.煤柱冲击地压时间效应研究.矿山压力与顶板竹理,2001.(I):75-77
    48姜耀东,王宏伟,赵毅鑫等.极软岩回采巷道业互补控制支护技术研究.岩石力学与工程学报,?009,28(12):2383-2390
    49 Hongwei Wang, BrettA.Poulsen, BaotangShen, ShengXue, YaodongJiang. The influence of roadway backfill on coal pillar strength by numerical investigation. International Journal of Rock Mechanics & Mining Sciences.2010,48(3):443-450
    50 赵毅鑫,姜耀东,王宏伟等.小康矿极软岩回采巷道矿压特征及互补支护设计.第四届全国煤炭工业生产一线青年技术创新文集,2009,147-154
    51 赵丽明.潘启新.王宏伟等.煤矿软岩巷道支护技术研究.中国矿业,,2008.17(4):79-82
    52 ltasca Consulting Group Inc., FLAC3D (Fast Lagrangian Analysis of Continua in 3 Dimensions), version 3.1, Minneapolis, Minnesota. USA.2006
    53 刘波,韩彦辉.FLAC原理、实例与应用指南.人民交通出版社,2005
    54 Hoke, E., Estimating mohr-coulomb friction and cohesion values from the Hock-Brown failure criterion. Int J Rock Mech Min Sci & Geomech Abstr,1990,27:227-229
    55 Zhou, J.W., Xu, W.Y. and Li, M.W., Application of rock strain softening model to numerical analysis of deep tunnel. Chinese Journal of Rock Mechanics and Engineering,2009,28:1116-1127 (in Chinese).
    56 Liu, Z.X., Li, X.B. and Zhao, G.Y., Three-dimensional energy dissipation laws and reasonable matches between backfill and rock mass. Chinese Journal of Rock Mechanics and Engineering,2010,29:344-348 (in Chinese)
    57刘鸿文.材料力学.北京:高等教育出版社,1992: 322328
    58徐志英.岩石力学.北京:中国水利水电出版社,2009: 30-64
    59夏志皋.塑性力学.上海:同济大学出版社,2008: 4555
    60郭建卿,苏承东.不同煤试样冲击倾向性试验结果分析.煤炭学报,2009, 34 (7):897902
    61李洪,齐爽,麒仁竹等.煤矿深部冲击倾向性试验研究.煤矿安全,2008,(1):11-14
    62夏均民,张开智.冲击倾向性理论在工程实践中的应用.矿山压力与顶板管理,2003,(4): 9799
    63赵德勤,韩承强,闫海有等.观台煤矿煤岩物理力学性质测定与冲击倾向性评价.煤,2007,16(9):12-14
    64王晓涛,张成训.新汉矿区防治冲击地压初探中因煤炭2001, 27 (4): 33-35
    65何全洪.冲击地压工作而垮而原因分析.矿山压力与顶板管理,2001(1):67-69
    66倪江新,刘永光.张小楼井冲击地压原因分析及顶测.江苏煤炭,1999(1): 1920
    67王小国, 陈轶平.千秋煤矿“9.3”冲击地从灾害浅析.中州煤炭,2000(2):37-41
    68韩安民,张周权.旗山煤矿冲击地瓜灾含浅析.煤炭科学技术,1997,25 (4): 9-11
    69陈荣德,乔河.老虎台矿神击地压下特厚煤层煤巷锚杆支护试验研究.中国矿业,2000,9 (4): 75-77
    70张水利,王艳,邰铸英楼,潘一山.房山矿区四槽煤冲击地践模型试验及数恤模拟研究煤矿开采,1998(2):25-27
    71缪协兴,孙海.吴志刚.徐州东部软岩矿区冲击矿压机理分析.岩石力学与工程学报,1999,18 (4):428-431
    72 周晓军,鲜学福.煤矿冲击地压理论与工程应用研究的进展.重庆犬学学报,1988,21(1):126-132
    73 Bieniawski A.T., Denkhaus H.G., Vogler U.W. Failure of Fracture Rock[J]. Int. J.Rock Mech.Min.Sci.,1969(2):323-341
    74 Crowle,P.J., Ground movements and method of support in deep mining:Inst. Mining Metall. Trans., 1931(40),l-77
    75 Dinsdale. J.R. Ground failure around excavations: Inst. Mining Metall. Trans..1937(46):673-700
    76 Spalding. J. Theory and practice of ground control. Inst. Mining Metall. Trans..1937(37):71-143
    77 Sinclair. W.E. Rock burst-their cause and prevention. Chem. Metall. Mining Soc. South Africa Jour., 1936(37):4-11
    78 Joseph, E.H.A. Rock bursts: The mechanism of crush bursts: Chem. Metall. Mining Soc. South Africa Jour. 1938(39):114-134
    79 布霍伊诺.矿山压力和冲击地压.北京,煤炭工业出版社,1985
    80 李玉生,张万斌,王淑坤.冲击矿压机理探讨.煤炭学报,1984,9(3):1-9
    81 颜卫东,王维,胡方冠等.宁二矿媒层冲击倾向性分析.矿山压力与顶板管理.2001,(1):102-103
    82 陈绍杰嘲,郭维嘉,杨永杰等.煤层冲击倾向性试验研究.矿业安全与环保,2007,34(2):10-14
    83孟召平,潘结南.煤系岩石冲击倾向性试验研究.中国科技论文在线,2007, 2(7): 511-516
    84潘结南,孟召平,刘保民等.煤系岩石的成分、结构与共冲击倾向性关系.岩石力学与工程学报,2005,24(24):4422-4427
    85潘结南.煤岩单轴压缩变形破坏机制及与其冲击倾向性的关系.媒矿安全,2006, (8):1-4
    86孟召平,潘结南,刘亮亮.含水量对沉积岩力学性质及其冲击倾向性的影响.岩石力学与工程学报,2009, 28(增1):26372643
    87唐礼忠,王文星.一种新的岩爆倾向性指标.岩石力学与工程学报,2002, 21(6): 874-878
    88 Linkov A M. Rockbursts and the instability of rock masses. Int. J. Rock Mech. Min. Sci. and Geomech. Abstr.,1996,33(7):727-732
    89 Kidybinski A. Bursting liability indices of coal[J]. Int. J. Rock Mech. and Min. Sci. and Geomech. Abstr., 1981,18(6):295-304
    90牟宗龙,窦林名,巩思园等.岩冲击破坏的剩余能量特性研究.中国科技沦文在线,1-9
    91唐礼忠,潘长良,王文拱等.于分析岩爆倾向性的剩余能量指数.中南工业大学学报,2002, 33(2):129-132
    92齐庆新、陈尚本、王怀新等,冲击地压、岩爆、矿震的关系及其数值模拟研究,岩石力学与工程学报,2003·22(11):1852-1858
    93 Lippmann H. Mechanical considerations of bumps in coal mines, Rockbursts and Seismicity in Mines, Fairhurst(ed.), Balkema, Rotterdam,1990,279-284
    94 Hamid Maleki, Eric G. Zahl & John P. Dunford, A hybrid statistical-analytical method for assessing violent failure in U.S coal mines, DHHS(NIOSH) Publication, No.99-114, June 1998.139-144
    95李希勇,张修峰.典型深部承大冲击地振事故原因分析及防治对策.煤炭科学技术,2003, 31(2): 15-17
    96许增会,宋宏伟,赵坚.地震对隧道稳定性影响的数仿模拟分析.中国矿业大学学报,2004, 33(t):41-44
    97郑际汪,陈华真.爆破荷载作用下隧道岩稳定性分析.矿山压力与顶板管理,2004, (4): 53-55
    98陶连金,张悼元,傅小敏.地震荷载作用下节理岩体地下硐室围岩稳定性分析.中国地质灾害与防治学报,1998, 9(1):32-40
    99薛亚东,张世平,康天合.回采巷道锚杆动载响应的数值分析:2003, 22(11):1903-1906
    100 Litwiniszyn J. A model for the initiation of Coal-Gas outbursts[J]. Int. J. Rock Mech. Min. Sci & Geomech. Abstr.,1985,20(1):39-46
    101 Brauner G.矿山压力山冲击地压.李玉生译.北京:煤炭工业出版社, 1985.1-17, 45-53.
    102李华晔.地下硐室旧岩稳定性分析.北京:中国水利水电出版社,1999.69-88.
    103 Bodziony J, Nelicki A, Topolnicki J. Results of laboratory investigations of gas and coal outbursts]. Arch. Min. Sci.,1989,34:581-591
    104安志雄.区域性冲击地压预测装置.煤矿安全,1994(6): 48-50
    105张绪言,康立勋,杨双锁等.岩冲击倾向性与剩余能量释放速度的关系.煤矿安全,2009. (2): 74-.76
    106曲华,蒋金泉,苹让军等,煤岩复合模型冲击倾向的数值试验研究,矿山压力与顶板管理,2004. (4):93-95
    107 王宏图,许江,魏福生.煤岩体冲击倾向性指标评价.矿山压力与顶板管理,1999,(3):204-210
    108 邹德蕴,姜福兴.煤岩体中储存能量与冲击地压孕育机理及预测方法的研究.煤炭学报,2004,29(2):159-163
    109李永生,刘彦昌.平煤股份一矿丁6煤层冲击倾向性研究.中国煤炭,2010,36(5):99-101
    110裴广文,纪洪广.深部开采过程中构造型冲击地压的能量级别预测.煤炭科学技术,2002,30(7):48-51
    111代军伟,谢耀社.组合煤岩冲击倾向性研究.大众科技,2008,(5):98-99
    112窦林名,陆菜平,牟宗龙等.组合煤岩冲击倾向性特性实验研究.采矿与安全工程学报,2006,23(1):43-46
    113支光辉,黄春光.跃进煤矿煤岩冲击倾向性实验研究.煤炭工程,2009,11:76-78
    114张绪言,冯国瑞.用剩余能量释放速度判定煤岩冲击倾向性.煤炭学报,2009,34(9):1165-1168
    115郭臣业,鲜学福,万亮亮等.永川煤矿须六段砂岩力学性质与冲击倾向性试验研究.中国地质灾害与防治学报,2010,21(3):94-97
    116唐礼忠,王文星.一种新的岩爆倾向性指标.岩石力学与工程学院,2002,21(6):873-878
    117祝方才,潘长良,郭然等.个新的岩爆倾向性指标-有效冲击能指标.矿山压力与顶板管理,2002,(3):83-84
    118王淑坤,齐庆新,曾永志等.国煤岩冲击倾向研究的进展.煤矿开采,1998,(3):30-32
    119刘增平,刘文宝,吴龙泉.唐口煤业煤岩层冲击倾向性试验研究,煤矿安全.2009,(7):8-10
    120 Khair, A.W.. An analysis of coal bump liability in a bump prone mine. International journal of Mining Engineering.1985,3:243-259
    121 Shen. B., King,A., Guo, H.. Displacement, stress and seismicity in roadway roofs during mining~induced failure. International Journal of Rock Mechanics & Mining Sciences.2008,45:672-68
    122 Singh, S.P.. Burst energy release index. Rock Mechanics and Rock Engineering.1988,21:149-155
    123 Tesarika, D.R., Seymoura, J.B., Yanske, T.R.. Post~ailure behaviour of two mine pillars confined with backfill. Int J Rock Mech Min Sci.2003,40:221-232
    124 Varley, F. D.. Outburst Control in Underground Coal Mines. In:Proceedings of the 5th International Conference on Ground Control in Mining. WVU. Morgantown, WV,1986,249-256
    125 Zhao, Y.X., Jiang, Y.D.. Acoustic emission and thermal infrared precursors associated with bump-prone coal failure. International Journal of Coal Geology.2010,83:11-20
    126 Medhurst, T.P.. Brown, E.T.. A study of the mechanical behaviour of coal for pillar design. Int J Rock Mech Min Sci.1998,35:1087-1105
    127 Mohamed, K.M.. design considerations for longwall yield pillar stability. Doctoral dissertation, West Virginia University,2003,7-17
    128 Mohan, G. M., Sheorey, P.R., Kushwaha, A.. Numerical estimation of pillar strength in coal mines. Int J Rock Mech Min Sci.2001.38:1185-1192
    129 Mortazavi, A., Hassani, F.P., Shabani, M. A numerical investigation of rock pillar failure mechanism in underground openings. Computers and Gcotechnics.2009,36:691-697
    130齐庆新,陈尚本,王怀新等.冲击地压、岩爆、矿震的关系及其数值模拟研究[J].岩石力学与工程学报,2003.22(11):1852-1858
    131刘文岗,姜耀东,周宏伟.冲击倾向性煤体的细观特征与裂纹失稳的试验研究.湖南科技大学学报,2006.21(4):14-18
    132赵毅鑫,姜耀东,韩志茹等.冲击倾向性煤体破坏过程声热效应的试验研究.岩石力学与工程学报.2007,26(5):965-971
    133赵毅鑫,姜耀东,张雨等.冲击倾向性与煤体细观结构特征的相关规律.煤炭学报,2007,32(1):64--68
    134冯增朝,赵阳升.岩石非均质性与冲击倾向的相关规律研究.岩石力学与工程学报,2003,22(11):1863-1865
    135张志镇,高峰,刘治军等.温度影响下花岗岩冲击倾向及其微细观机制研究.岩石力学与工程学报,2010,29(8):1591-1602
    136朱道建,杨林德,蔡永昌.柱状节理岩体各向异性特性及尺寸效应研究.岩石力学与工程学报,2009,28(7):1405-1414
    137王学滨,潘一山.不同侧压系数条件下圆形巷道岩爆过程模拟.岩土力学,2010,31(6):1937-1942
    138王学滨.不同强度岩石的破坏过程及声发射数值模拟.北京科技大学学报,2008,30(8):837-843
    139王学滨.具有初始随机材料缺陷的矿柱渐进破坏模拟.中国矿业大学学报,2008,37(2):196-200
    140唐春安.岩石声发射规律数值模拟初探.岩石力学与工程学报,1997,16(4):368-374
    141梁正召,唐春安,张永彬等.准脆性材料的物理力学参数随机概率模型及破坏力学行为特征.岩石力学与工程学报,2008,27(4):718-727
    142 Tang C A. Numerical simulation of rock failure and associated seismicity. Int. J. Rock Mech. Min. Sci., 1997,34(2):249-262
    143姜福兴,杨淑华,XUN Luo.微地震监测揭示的采场围岩空间破裂形态.煤炭学报,2003,28(4):357-360
    144成云海,姜福兴,张兴民等.微震监测揭示的C型采场空间结构及应力场.岩石力学与工程学报,2007,26(1):102-107
    145姜福兴,苗小虎,王存文等.构造控制型冲击地压的微地震监测顶警研究与实践.煤炭学报,2010,35(6):900-903
    146 Salamon, M. D. G. and Munro, A. H., A study of the strength of coal pillars. J. S. Afr. Inst. Min. Metall.,1967, 68:68-78
    147王建,白世彪,陈晔.Surfer 8地理信息制图.北京:中国地图出版社,2004
    148刘国泉.关于应用钻屑量与钻屑瓦斯解吸指标判定突出危险性若千问题的讨论.煤矿安全,1993,2:35-40
    149程五一.突出预测指标钻屑倍率的动力分析.煤矿安全,1994,5:18-22.
    150文光才,王先义.突出预测钻屑量指标的探讨.煤炭工程师,1998,3:32-34.
    151尹光志,李晓泉.钻屑量与矿山压力及瓦斯压力关系现场试验研究.北京科技大学学报,2010,32(1):1-7
    152齐黎明,林柏泉,支晓伟等.上山掘进时卸压区应力及防突长度分析.中国矿业大学学报,2005,34(3):299-302
    153李高帅.突出煤层走向长避工作面卸压区研究[硕士学位论文].重庆大学,2010
    154李国旗,叶青.逐段卸压打钻施工技术研究.中州煤炭,2009,(12):1-4
    155李爱民.突出煤层打钻常见问题的处理.煤炭科技,2009.(2):68-69
    156陈寒秋.影响煤层深孔打钻的原因分析和防治措施.中州煤炭,2007,(1):53-54
    157林柏泉,周世宁,煤巷卸压带及其在煤和瓦斯突出危险性预测中的应用.中国矿业大学学报.1993,(4):44-52
    158张建国,林柏泉,叶青等.工作面卸压区浅孔瓦斯抽放技术研究.采矿与安全工程学报.2006.23(4):432-436
    159陆菜平,窦林名,吴兴荣等.基于能量机理的卸压爆破效果电磁辐射检验法.岩石力学与工程学报,2005,24(6):1014-1017
    160张九零,郭立稳.马家沟矿0521工作面卸压带的测定研究.中国矿业,2006,15(6):52-53
    161王凯,郭灵强,俞启香.综采工作面水力超前卸压防突数值模拟与试验研究.煤炭学报,2007,32(8):832-837
    162马中飞.综采工作面水力超前卸压防突技术的理论与应用研究[博士学位论文].徐州:中国矿业大学,2005
    163马中飞,余启香,朱庆华.综采工作面水力超前卸压防突技术的试验研究.矿业安全与环保,2005,32(3):3-5
    164李志强,王兆丰.煤巷掘进工作面中高压注水措施消突机理研究.焦作工学院学报,2004,23(3):165-169

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700