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水泥水玻璃注浆加固黄土隧道富水软弱段试验研究 被引量:7
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作者 吴昊 杨晓华 《水资源与水工程学报》 CSCD 2018年第6期196-200,共5页
针对黄土隧道富水软弱段围岩强度低、自稳能力差,极易发生地质灾害的现状,在室内测定了水泥-水玻璃浆液不同配比下的凝结时间以及注浆加固时影响土体无侧限抗压强度因素的基础上,通过现场模拟试验,对水泥-水玻璃浆液配比、注浆压力、浆... 针对黄土隧道富水软弱段围岩强度低、自稳能力差,极易发生地质灾害的现状,在室内测定了水泥-水玻璃浆液不同配比下的凝结时间以及注浆加固时影响土体无侧限抗压强度因素的基础上,通过现场模拟试验,对水泥-水玻璃浆液配比、注浆压力、浆液扩散半径等技术参数和注浆加固后复合土体的强度进行了研究。结果表明:水灰比取1∶1、水玻璃浓度取30~35°Be'及水泥水玻璃体积比取1∶1制备的浆液凝胶时间较为合理;当土体含水率为20%、密度1. 8 g/cm3、水玻璃浓度35°Be'及浆液掺入比为15%时,其无侧限抗压强度最大;现场模拟试验表明:注浆压力在0. 4~1. 0 MPa时,浆液的扩散半径为0. 4~0. 9 m,加固后土体的力学性能有了较大的改善,其极限荷载为300 k Pa,变形模量为21. 48 MPa。 展开更多
关键词 黄土隧道 富水软弱段 水泥水玻璃 注浆加固试验
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Failure mechanism and control technology of water-immersed roadway in high-stress and soft rock in a deep mine 被引量:11
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作者 Yang Renshu Li Yongliang +3 位作者 Guo Dongming Yao Lan Yang Tongmao Li Taotao 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第2期245-252,共8页
Aiming at soft rock ground support issues under conditions of high stress and long-term water immersion, the ground failure mechanism is revealed by taking the deep-water sumps of Jiulong Mine as the engineering backg... Aiming at soft rock ground support issues under conditions of high stress and long-term water immersion, the ground failure mechanism is revealed by taking the deep-water sumps of Jiulong Mine as the engineering background and employing field investigation, tests of rock structure, mechanical properties and mineral composition. The main factors leading to the surrounding rock failure include the high and complex stress state of the water sumps, high-clay content and water-weakened rock, and the unreasonable support design. In this paper, the broken and fractured rock mass near roadway opening is considered as ground small-structure, and deep stable rock mass as ground large-structure. A support technology focusing on cutting off the water, strengthening the small structure of the rock and transferring the large structure of the rock is proposed. The proposed support technology of interconnecting the large and small structures, based on high-strength bolts, high-stiffness shotcrete layer plugging water,strengthening the small structure with deep-hole grouting and shallow-hole grouting, highpretensioned cables tensioned twice to make the large and small structures bearing the pressure evenly,channel-steel and high-pretensioned cables are used to control floor heave. The numerical simulation and field test show that this support system can control the rock deformation of the water sumps and provide technical support to similar roadway support designs. 展开更多
关键词 High stress and soft rock Water immersion Failure mechanism Large and small structures Rework control
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