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软弱富水风化岩地层隧道注浆加固机理与参数优化研究 被引量:2
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作者 王松 周勇 +4 位作者 杨涛 刘晨 梁超恒 曾冠铭 黄发明 《市政技术》 2022年第3期96-101,114,共7页
确定有效的帷幕注浆加固参数,可以降低隧道穿越富水软弱地层遭遇突水突泥灾害的风险。通过室内注浆试验,研究了不同注浆量下的风化花岗岩堵水加固特性。试验结果表明:注浆量(浆液充填率,GFR)达到32%以上时,试样的物理力学特性显著改善,... 确定有效的帷幕注浆加固参数,可以降低隧道穿越富水软弱地层遭遇突水突泥灾害的风险。通过室内注浆试验,研究了不同注浆量下的风化花岗岩堵水加固特性。试验结果表明:注浆量(浆液充填率,GFR)达到32%以上时,试样的物理力学特性显著改善,其中黏聚力较未注浆时增长了2.96倍,达到178.8 kPa,渗透系数下降至10^(-8)cm/s以下。考虑风化花岗岩中浆液扩散模式以劈裂和挤密扩散为主,不符合室内注浆的均匀特性。因此基于安全考虑,建议注浆量应达到48%以上,并采用COMSOL多场耦合数值仿真系统开展帷幕注浆参数研究。研究结果表明:帷幕注浆加固圈的渗透率降低1个数量级时,注浆圈厚度取5~6 m,堵水效果最为经济可行,建立的帷幕注浆量与加固圈厚度可为类似工程提供借鉴。 展开更多
关键词 全强风化花岗岩 隧道突水突泥 室内试验 注浆量 注浆厚度
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Formation mechanisms of water inrush and mud burst in a migmatite tunnel:a case study in China 被引量:5
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作者 WU Guo-jun CHEN Wei-zhong +2 位作者 YUAN Jing-qiang YANG Dian-sen BIAN Han-bian 《Journal of Mountain Science》 SCIE CSCD 2017年第1期188-195,共8页
This paper presents a case study of water inrush and mud burst occurring in a migmatite tunnel to study its formation mechanisms. The geological investigation and mineralogical analysis showed that water inrush and mu... This paper presents a case study of water inrush and mud burst occurring in a migmatite tunnel to study its formation mechanisms. The geological investigation and mineralogical analysis showed that water inrush and mud burst in the migmatite was closely related to the component of the host rock. High content of soluble minerals,e.g.,calcite and dolomite,would make the migmatite rock prone to be fragmentized,isintegrated and eventually form different sorts of connected or semi-connected veins. The field exploration revealed most cavities in the magmatite tunnel were eroded by groundwater and formed large interconnected networks. The two faults and the dike in the magmatite tunnel became the preferred paths and provided great convenience for plenty of precipitation and mud slurry. Due to high water pressure and blast disturbance,the cavities can soon connect each other as well as all sorts of veins,forming a complex ground channel for water inrush and mud burst. To estimate the potential occurrenceof water inrush and mud burst,the water bursting coefficient was employed. The results showed the water bursting coefficient of the magmatite tunnel was much bigger than the threshold values and it can be used to explain the accident of water inrush and mud burst occurring in the magmatite tunnel. 展开更多
关键词 Water inrush Mud burst Migmatite Formation mechanism Tunnel
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