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高层建筑深基坑预应力长锚杆支护的应用 被引量:1
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作者 富荣辉 刘昱 《东北水利水电》 2013年第3期19-20,共2页
针对在软土地基面大的基坑支撑施工难的问题,本文以中国水电·云立方项目为例,论述了预应力锚杆在深基坑支护中代替支撑的技术措施。工程实践表明,该法具有节约造价、加快施工进度的优点。
关键词 深基坑支护 预应力长锚杆 位移监测 高层建筑
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隧道软弱围岩挤压大变形非线性流变力学特征及其锚固机制研究 被引量:24
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作者 孙钧 潘晓明 王勇 《隧道建设》 北大核心 2015年第10期969-980,共12页
介绍围岩大变形的工程实例、隧道围岩挤压性大变形的定义及其工程特征。系统总结国际上隧道围岩挤压性大变形的3种预测方法,即:经验法、半经验半理论法和试验判定法。将Hoek(1999)对围岩挤压大变形的预测和判定方法(半经验半理论法)应... 介绍围岩大变形的工程实例、隧道围岩挤压性大变形的定义及其工程特征。系统总结国际上隧道围岩挤压性大变形的3种预测方法,即:经验法、半经验半理论法和试验判定法。将Hoek(1999)对围岩挤压大变形的预测和判定方法(半经验半理论法)应用于乌鞘岭隧道岭脊段F7断层带开挖施工中的围岩稳定性判别,并对这种预测方法进行了可靠性评价,认为有支护情况下比无支护情况下变形预测失效概率要小得多,也就是说毛洞围岩变形收敛率的大小更难以掌控。介绍作者团队对隧道围岩挤压性大变形问题按三维非线性流变的理论分析、相应专用软件的研制;并将理论研究计算成果与现场实测数据进行对比,结果按大变形三维问题的计算值比按小变形二维平面问题的计算值更接近工程实际;同时,指出了有待进一步深化研讨的若干问题。最后,提出了管控/约束隧道围岩大变形持续发展的锚固技术措施--一种新型大尺度让压锚杆/预应力长锚索,分析其机制和优势,介绍其构造类型,并提出下一步的研究思路。该方法已在几处工地不同程度地成功实施,取得了应有的经济效益和技术成果。 展开更多
关键词 隧道 软弱围岩 挤压大变形 预测 小变形二维非线性黏弹塑性本构模型 大变形三维弹黏塑性本构模型 大尺度让压锚杆/预应力锚索
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Study on gob-side entry retaining in fully-mechanized longwall with top-coal caving and its application 被引量:13
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作者 Su Hai Bai Jianbiao +2 位作者 Yan Shuai Chen Yong Zhang Zizheng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第3期503-510,共8页
Based on the engineering background of gob-side entry retaining in fully-mechanized longwall with top coal caving(GER-FLTC) on N2105 working face of Yuwu coal mine, by adopting the methods of theoretical analysis and ... Based on the engineering background of gob-side entry retaining in fully-mechanized longwall with top coal caving(GER-FLTC) on N2105 working face of Yuwu coal mine, by adopting the methods of theoretical analysis and numerical calculation, the control techniques of surrounding rocks in GER-FLTC working face are studied in this paper. The two main difficulties of stability of surrounding rocks at gob-side retained entry in fully-mechanized longwall working face are the stability control of top coal and control of large deformation of GER-FLTC working face. Interaction mechanical model between roofing and roadside backfilling in GER-FLTC is established and the equations for the calculation of roof-cutting resistance of roadside backfilling are derived. Results of numerical calculation show that the damage zones of top coal can be categorized into the delaminating zone of top coal above the backfilling, tensile damage zone of top coal above the retained roadway and shear damage zone of the upper rib of the solid coal. Stability control of top coal is the critical part to success of GER-FLTC. With consideration of large deformation of surrounding rocks of gob-side retained entry in fully-mechanized longwall, the support technique of‘‘roofing control and wall strengthening'' is proposed where high strength and highly prestressed anchor rods and diagonal tensile anchor cables support are used for top coal, high strength and highly prestressed yielding anchor rod support is used for solid coal and roadside prestressed load-carrying backfilling is constructed by high-water material, in order to maintain the integrity of the top coal, transfer load, high resistance yielding load-carrying of solid coal, roof-cutting of roadside backfilling and support,and to achieve GER-FLTC. Results from this study are successfully applied in engineering practice. 展开更多
关键词 Gob-side entry retaining in fully-mechanized longwan with top coal caving Stability control of top coalLarge deformation control Roofing control and wall strengthening
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