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Coal Geology & Exploration

Abstract

In order to solve the rescue problem of collapsed roadways in coal mines and improve the drilling speed of large-diameter rescue boreholes, the construction method of large-diameter borehole with pipe jacking technology was proposed. Specifically, the collapsed rock mass was crushed and the slag was removed by pushing the connectable pipe joints and cutter heads with the main jacking equipment arranged in the chamber, so as to form a rescue channel composed of jacked pipes at last. A composite cutter head with large opening under the condition of collapsed rock mass was developed, which is composed of 10 cutters, 10 hobs and 2 scrapers, and the opening ratio of the cutter head is 40%, capable of meeting the demand for rapid crushing of large slag. Besides, a drive system of small-diameter pipe jacking rescue equipment and a new slag discharge system integrated with peripheral drive, rock crushing and slag discharging were developed, of which the main structure includes the slag discharge pipe, planetary reducer, big gear, cutter head, motor, etc. Specifically, the cutter head and slag discharge pipe rotate under the drive of motor and the slag discharge pipe is welded with spiral slag discharge bars inside. After the coal and rock are crushed and enter the cutter head, the slag will be continuously discharged by the scraper connected with the slag discharge pipe. The maximum particle size of slag discharged is 300 mm, which could solve the problem of requirements for slag discharge with large flow and particle, as well as the layout of slag discharge system in small space. The experimental environment of the accumulation body of the collapsed roadway has been set up, and the industrial experiment of the pipe jacking rescue equipment in the coal mine has been completed with the jacking distance of 102.5 m and the equivalent daily footage of 43.92 m, thus forming a rescue channel with an inner diameter of 1 575 mm. In addition, the changing trend of the cutter head torque and propulsion force during the pipe jacking process has been measured. The research results are of great significance for improving the technical level of emergency response and rescue equipment in China, and minimizing the casualties and property losses under disastrous conditions.

Keywords

large-diameter rescue drilling,pipe jacking drilling,emergency rescue equipment,cutter head design,spiral slag discharge system,coal mine

DOI

10.12363/issn.1001-1986.22.06.0508

Reference

[1] 马宏伟,马琨,田海波. 矿山钻孔救援探测机器人研究进展[J]. 工矿自动化,2019,45(2):24−29

MA Hongwei,MA Kun,TIAN Haibo. Research progress of mine drilling rescue detection robots[J]. Industry and Mine Automation,2019,45(2):24−29

[2] 高广伟,张禄华. 大直径钻孔救援的实践与思考:以山东平邑“12•25”石膏矿坍塌事故救援为例[J]. 中国应急管理,2016(3):74−75

GAO Guangwei,ZHANG Luhua. Practice and thinking of large diameter borehole rescue take rescue work of“ 12•25” Gypsum Mine collapse accident in Pingyi of Shandong as an example[J]. China Emergency Management,2016(3):74−75

[3] 强永国. 矿山应急救援体系的构建与完善[J]. 世界有色金属,2018(21):104

QIANG Yongguo. Construction and improvement of mine emergency rescue system[J]. World Nonferrous Metals,2018(21):104

[4] 田宏亮,张阳,郝世俊,等. 矿山灾害应急救援通道快速安全构建技术与装备[J]. 煤炭科学技术,2019,47(5):29−33

TIAN Hongliang,ZHANG Yang,HAO Shijun,et al. Technology and equipment for rapid safety construction of emergency rescue channel after mine disaster[J]. Coal Science and Technology,2019,47(5):29−33

[5] 郝传波,张国华,胡刚,等. 煤矿井下灾后救援中垮塌巷道研究的展望[J]. 黑龙江科技学院学报,2012,22(6):549−552

HAO Chuanbo,ZHANG Guohua,HU Gang,et al. Prospect of study on tunnel collapse during rescue following disaster in coal mines[J]. Journal of Heilongjiang Institute of Science & Technology,2012,22(6):549−552

[6] 宋元明,刘志军,王万生. 快速钻孔技术在煤矿应急救援中的实践[J]. 中国安全科学学报,2004,14(6):63−65

SONG Yuanming,LIU Zhijun,WANG Wansheng. Practice of quick drill in coal mine emergency rescue[J]. China Safety Science Journal,2004,14(6):63−65

[7] 王育军. 关于一起巷道坍塌事故的应急救援与思考[J]. 有色金属设计,2009,36(2):68−72

WANG Yujun. On emergency rescue of a drift collapse accident and thinking[J]. Nonferrous Metals Design,2009,36(2):68−72

[8] 孙继平,钱晓红. 煤矿重特大事故应急救援技术及装备[J]. 煤炭科学技术,2017,45(1):112−116

SUN Jiping,QIAN Xiaohong. Emergency rescue technology and equipment of mine extraordinary accidents[J]. Coal Science and Technology,2017,45(1):112−116

[9] 严绍军,张爱华. 顶管工程后背受力与变形三维分析[J]. 煤田地质与勘探,2006,34(1):37−40

YAN Shaojun,ZHANG Aihua. Stress and deformation analysis of pipejacking thrust wall[J]. Coal Geology & Exploration,2006,34(1):37−40

[10] 李全. 隧道顶管救援液压顶管机应用[J]. 铁道建筑技术,2017(4):118−123

LI Quan. Application of hydraulic pipe jacking rescuing machine in tunnel[J]. Railway Construction Technology,2017(4):118−123

[11] 李夕兵,周子龙,叶州元,等. 岩石动静组合加载力学特性研究[J]. 岩石力学与工程学报,2008,27(7):1387−1395

LI Xibing,ZHOU Zilong,YE Zhouyuan,et al. Study of rock mechanical characteristics under coupled static and dynamic loads[J]. Chinese Journal of Rock Mechanics and Engineering,2008,27(7):1387−1395

[12] 张晋勋,江华,孙正阳,等. 大粒径卵漂石地层盾构破岩机理及工程应用[J]. 土木工程学报,2017,50(2):88−96

ZHANG Jinxun,JIANG Hua,SUN Zhengyang,et al. Shield tunneling in large size cobble and boulder strata:Rock−breaking mechanism and engineering application[J]. China Civil Engineering Journal,2017,50(2):88−96

[13] 张强,索江伟,王海舰,等. 基于ABAQUS的凿岩机钻头破岩数值模拟分析[J]. 振动与冲击,2018,37(1):136−141

ZHANG Qiang,SUO Jiangwei,WANG Haijian,et al. Numerical simulation analysis on the drill bit rock breaking process based on ABAQUS[J]. Journal of Vibration and Shock,2018,37(1):136−141

[14] 高智勇. 基于SolidWorks的辐条式盾构刀盘参数化设计研究[D]. 成都:西南交通大学,2019.

GAO Zhiyong. Parametric design of spoke shield cutter based on SolidWorks[D]. Chengdu:Southwest Jiaotong University,2019.

[15] 耿麒. 全断面隧道掘进机破岩机理和两级刀盘新结构研究 [D]. 西安:西安交通大学,2017.

GENG Qi. Study on rock breaking mechanism and new structure of two−stage cutter head of full−section tunnel boring machine[D]. Xi’an:Xi’an Jiaotong University,2017.

[16] SANIO H P. Prediction of the performance of disc cutters in anisotropic rock[J]. International Journal of Rock Mechanics and Mining Sciences & Geomechanics Abstracts,1985,22(3):153−161.

[17] 李慎举,王连国,陆银龙. 破碎岩体巷道变形破坏特征的数值模拟研究[J]. 采矿与安全工程学报,2011,28(1):39−44

LI Shenju,WANG Lianguo,LU Yinlong. Numerical simulation for deformation failure characters in roadway with broken rock mass[J]. Journal of Mining & Safety Engineering,2011,28(1):39−44

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