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81.
陈贵红 《现代隧道技术》2012,49(1):84-88,95
文章采川三维有限元数值模拟研究了偏压连拱隧道不同施工顺序下拱顶下沉、中墙稳定性及初期支护受力特征.研究结果表明,先开挖浅埋侧时,拱顶沉降较小,中墙在施工中的稳定安全系数较大、弯矩较小,初期支护受力较大;对于浅埋偏压连拱隧道,围岩变形及中墙在施工中的稳定性控制更为重要.所以,从有利于围岩变形、中墙稳定性控制以及中墙受力的角度出发,宜采用先开挖浅埋侧的施工方法.  相似文献   
82.
软弱围岩隧道修建新方法——核心土加固变形控制法   总被引:2,自引:0,他引:2  
彭峰  肖盛能  潘威  邹明波 《现代隧道技术》2012,49(3):131-137,145
2006年我国铁路系统相关施工单位开始接触变形控制法隧道施工技术,经过长达5年的基础理论学习研究与准备,在铁道部和兰渝铁路公司的支持下,2011年由中铁瑞威公司和意大利土力公司联合在兰渝铁路桃树坪隧道进行了中国首次隧道核心土加固变形控制法应用试验研究,并取得成功。文章通过工程实践,对桃树坪隧道的工程概况、地质问题、施工工艺、施工设备及核心土加固控制变形技术的应用效果作了较详细介绍。  相似文献   
83.
文章以新世纪大桥主桥钢桁架上构施工为例,对施工所需缆索吊装系统的承重主索、塔架、地锚、扣挂体系进行了介绍,并阐述了利用缆索吊装系统进行钢桁架拱桥上构施工的工艺流程及技术要点。  相似文献   
84.
文章结合三岸邕江特大桥工程实例,对比分析了悬臂拼装钢桁拱的施工监控特点,阐述了悬臂拼装钢桁拱施工监控的主要内容及组织实施流程。  相似文献   
85.
文章以梧州西江大桥箱形拱桥为例,在对桥梁结构进行外观检测的基础上,利用Midas Civil 2010建立模型,通过静载和动载试验分析了该桥的承载能力及结构力学特性,提出了相应的维修加固措施,并探讨了维修加固处理的工程效果。  相似文献   
86.
文章对岜肯隧道浅埋偏压段洞口施工中出现的塌方及初衬开裂情况进行客观分析,结合施工实际提出了地表加固及平衡土体偏压措施,有效地控制了地表变形及隧道沉降开裂,保证了隧道施工安全、顺利进行。  相似文献   
87.
For existing advanced geological forecasting, the forecast distance is short and the test frequency is high, increasing test and construction risks. Since various methods have different requirements for the test environ-ment, preparation work can be tedious and result in a long construction time thereby affecting normal construction.A new advanced geological forecast technique based on multi-source seismic interferometry for tunnels is proposed.This technique uses the blast at one end of tunnel as a centrum and receives the signal at the other end of the tun-nel, therefore allowing advanced geological forecasting of the unexcavated tunnel part by relative processing and im-aging. A numerical simulation of this kind of geological forecasting using the finite difference method to simulate two kinds of unfavorable geological bodies (karst and a fault) predicted them accurately and verified the effective-ness and accuracy of this geological forecasting method. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
88.
Water bursts during tunnel construction endanger construction, and it is therefore necessary to reserve a waterproof dike with the required thickness to avoid water bursts and to take reinforcement of the dike and treatment of the structure liable to trigger a water burst. Using the water burst at K5+398 of the Mingyueshan tunnel of the Shanghai-Chengdu expressway as an example, and considering the type of tunnel section and the upright mudstone of the dike, the waterproof dike at the work face is simplified as a round thin plate. A formula for the calculation of a minimum safety thickness for the critical waterproof dike is deduced by analyzing the force applied on the water-proof dike, and the minimum safety thickness for the water burst section at K5+398 of the Mingyueshan tunnel is cal-culated. The numerical simulation analysis demonstrates the critical thickness of waterproof dike at K5+398 of the Mingyueshan tunnel is 1.4-1.55 m, and the calculated water inflow and water burst basically agree with the actual condition. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
89.
Combining the present situation and development trend of different tunnel support technologies at home and abroad, this paper analyzes the problems of rockburst in hard rock tunnels and large deformation in soft rock tunnels caused by high ground stress. It is concluded that: 1) regarding the rockburst problem, the current support technology is mainly influenced by the rock burst mechanism which is dominated by static factors, and so the used support components are generally of smaller deformation performance and "passive support" properties; 2) as the rockburst is the result of dynamic-static stress coupling, and only the anchor bolt has the "active support" attribute in the current "shotcrete+anchor bolt+wire net" support system, so the best support system should have the two functions of active support and energy release in terms of the rockburst problem, and the key focus of the research and development is anchorage members; 3) there are three main support types for large deformation in soft rock tunnels, e.g. the heavy support, layered support and yielding support. Among them, the heavy support system in underground cavern with large deformation is easy to induce excessive surrounding rock pressure, and so the applicable conditions are limited. The layered support system is still not the best choice due to its immature theoretical study, difficult determination of the thickness value and the installation time of each support layer and the interference to construction progress. With the characteristics of timely support and yielding while supporting, the yielding support system can give full play to the performance values of surrounding rocks and supporting materials, and make both of them reach the optimal state, so it is the best choice for supporting the soft rock tunnels with large deformations. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
90.
Gong C.  Luo Y.  Zhang J. 《现代隧道技术》2018,(6):210-216and221
Defects of tunnel lining, such as inadequate thickness, voids, cracks, rock falling and water leakage etc., endanger the safety of railway tunnel operation. Based on the site construction, an analysis of the reasons for lining defects was conducted; technical measures against lining defects were proposed and tests were carried out at site. The results show that these measures are reliable and effective, and the purposes of prevention and treatment are re⁃ alized. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
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