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现代隧道技术 2025, Vol. 62 Issue (2) :241-253    DOI:
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含天然气砂岩地层隧洞瓦斯赋存特征与防治技术研究
(1.中铁十八局集团第二工程有限公司,丰润 064001;2.西南石油大学地球科学与技术学院,成都 610500)
Study on Gas Occurrence Characteristics and Prevention Technology for Tunnels in Natural Gas-bearing Sandstone Formation
(1. The Second Engineering Co., Ltd. of China Railway 18th Bureau Group, Fengrun 064000; 2. School of Geoscience and Technology,Southwest Petroleum University, Chengdu 610500)
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摘要  为解决含天然气砂岩水平地层水工隧洞铣挖法施工存在的瓦斯涌出量、瓦斯压力难以定量预测,截割围岩作业火花可能引燃瓦斯等安全防控技术难题,依托亭子口引水工程母猪寨隧洞,在分析含天然气砂岩地层地质识别及瓦斯赋存运移特征的基础上,提出综合探测技术、钻孔排放防治技术和瓦斯灾害风险管控技术等综合防控技术。工程应用效果表明:(1)钻孔探测孔内瓦斯浓度高达80%,瓦斯压力为0.62 MPa,钻孔瓦斯涌出量约为30 L/min,含天然气砂岩地层赋存有压瓦斯,裂隙贯通后易发生异常涌出。(2)在隧洞掘进工作面前方35 m、侧墙15 m排放范围内,按有效影响排放半径3.2 m考虑在含天然气砂岩地层布设?89 mm瓦斯排放钻孔,孔底间距4.5 m。经过排放,残余瓦斯压力小于0.15 MPa,工作面瓦斯涌出量Q 绝=0.24 m3/min,瓦斯排放达到预期目标。(3)瓦斯排放作业期间,对掘进工作面环境进行监测并复核确定通风能力,排放瓦斯完成后对排放孔进行注浆封堵,实现了钻孔排放瓦斯安全作业。
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郝俊锁1 张祥炳1 王石光1 褚小金1 苏培东2
关键词含天然气隧洞   砂岩地层   瓦斯赋存特征   瓦斯防治   钻孔排放     
Abstract: In order to solve the technical problems that gas emission and gas pressure is difficult to be predicted quantitatively, and the spark induced by cutting surrounding rock may ignite gas during the milling excavation of horizontal natural gas-bearing sandstone formation in hydraulic tunnels, based on the analysis of geological identification and the characteristics of occurrence and migration of natural gas-bearing sandstone formations in Muzhuzhai tunnel of Tingzikou water diversion project, comprehensive prevention and control technologies such as comprehensive detection, directional drilling and discharge, and gas risk control, etc.are proposed. The research shows that: (1)the gas concentration in the borehole is as high as 80%, the gas pressure is 0.62 MPa, and the gas emission in the borehole is about 30 L/min. It shows that there is pressurized gas in the natural gas-bearing sandstone formation,and abnormal emission is easy to occur after the fracture is connected. (2) Within the discharge range of 35 m in front of the tunnel face and 15 m on the side wall of the tunnel, Ф89 mm gas discharge boreholes shall be arranged in the natural gas-bearing sandstone formation according to the effective emission radius of 3.2 m and the spacing between the holes at the bottom of 4.5 m. After discharge, the residual gas pressure is less than 0.15 MPa, the gas emission at the working face is 0.24 m3/min, with the gas emission reaching the expected goal. (3) During the gas discharge operation, through the environmental safety monitoring at the working face, the review and determination of ventilation capacity, and the grouting and sealing of the discharge holes after the completion of gas discharge, the safety operation of drilling and gas discharge is realized.
KeywordsTunnel with natural gas,   Sandstone formation,   Gas occurrence characteristics,   Gas prevention and con? trol,   Gas discharge from drilling hole     
基金资助:中铁十八局集团有限公司科研课题资助项目(0-JF-2023-亭子口灌区-0-2).
作者简介: 郝俊锁(1971-),男,正高级工程师,主要研究方向为地下工程及隧道施工与技术管理,E-mail:535123107@qq.com. 通讯作者:苏培东(1973-),男,博士,教授,博士生导师,主要从事地质工程和有毒有害气体对工程建设危害方面的教学和研究工作,E-mail:spdong@126.com.
引用本文:   
郝俊锁1 张祥炳1 王石光1 褚小金1 苏培东2 .含天然气砂岩地层隧洞瓦斯赋存特征与防治技术研究[J]  现代隧道技术, 2025,V62(2): 241-253
HAO Junsuo1 ZHANG Xiangbing1 WANG Shiguang1 CHU Xiaojin1 SU Peidong2 .Study on Gas Occurrence Characteristics and Prevention Technology for Tunnels in Natural Gas-bearing Sandstone Formation[J]  MODERN TUNNELLING TECHNOLOGY, 2025,V62(2): 241-253
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