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161.
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   
162.
More and more multiple-track tunnels and super-large section tunnels have been built, and disman- tling of temporary strut is a weak point of the whole structure during force transfer when the secondary lining is con- structed. It is significant to guarantee structure safety during dismantling of temporary strut. Little systematic re- search on safety in dismantling of temporary strut of the super-large section tunnel with double-layer primary support has been conducted, so the internal force and security of the two-layer primary support of the Xinkaotang tunnel were analyzed by a numerical analysis and site measurement, and it proves the effect of two-layer primary support on the safety during strut dismantling. The research results indicate that: (1) with constant support thickness and one-time longitudinal dismantling length, the safety factor of secondary primary support is larger than that of the first primary support, and the safety factor of the first primary support is larger than that of the single-layer primary support. Change range of safety factor for the first primary support is smaller than that of the single-layer primary support, and the safe factor for the single-layer primary support is smaller than that of the secondary primary support; (2) with the same support pattern, the safety factors increase firstly and then decrease with an increase of the onetime dismantling length. The calculated results of various cases show that the reasonable one-time dismantling length for this project is about 9 m. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
163.
Considering the influence of many factors (soil loss, frontal additional thrust, the friction force of the shield shell and the additional grouting force), a method for improving the uniform soil body movement model is pro-posed, and a mechanical calculation model is established to study the calculation method for soil body deformation caused by double-line parallel shield driving. Based on the Mindlin solutions of elastic mechanics, the theoretical solutions for soil body deformations caused by the last three factors are calculated; considering the uniform soil body movement model, the theoretical solutions for soil body deformations caused by soil loss are calculated, then the to-tal theoretical solutions for soil body deformations under multiple factors are obtained by means of superposition. The vertical surface settlement, vertical horizontal displacement, and vertical displacements of the soil body at different depths of Hangzhou Metro Line 1 are calculated to analyze the variation laws. Meanwhile the influential factors for horizontal displacement variation are studied. The research shows that with a change of depth, the settlement of the soil body changes within the scope of 10 to 13 m in the horizontal direction near where the maximum settlement occurs;the direction of the horizontal displacement of the soil body changes with a change of the positional relationship be-tween the calculation points and the tunnel; and with an increase of interval J for the two tunnels, the horizontal dis-placement of the soil body of a deep double-line tunnel decreases while the displacement near the surface changes slightly. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
164.
冯光华  林治平 《水运工程》2017,(10):206-210
通过对软土地基中1根桩长52.5 m、桩径1 m的钢管桩的压桩试验、拔桩试验和水平静载试验,探讨软土地基中钢管桩工程性状和分布规律。结果表明:软土地基钢管桩水平静载试验的最大弯矩值在泥面以下2倍桩径处,且不随着荷载的增加而改变;软土地基的水平静载试验,按照按泥面位移10 mm进行位移控制时,其m值可取3 500 kN/m~4;软土地基由于侧阻力较小,压桩试验时,传递至桩底的轴力值与桩顶荷载的比例可达30%,而拔桩时,该值为12%左右。  相似文献   
165.
宋翼 《水运工程》2017,(12):192-197
针对吹填土对筒型基础结构工作性能影响的问题,进行三维有限元模拟研究。采用大型通用有限元软件ABAQUS建立筒型基础结构与吹填土相互作用的三维弹塑性模型,模拟在波浪荷载和不同厚度吹填土作用下筒型基础结构各点土压力的变化趋势,揭示筒壁所承受土压力的分布规律以及不同厚度吹填土的影响。该结果为防波堤的筒型基础结构稳定性验算提供了依据。  相似文献   
166.
魏振兴  丁洁 《水运工程》2017,(11):176-180
受制于砂石等建筑材料匮乏,浙江沿海围垦工程推进困难,寻找合适的替代材料迫在眉睫。因地制宜,就地取材,利用滩涂丰富的黏土资源,形成袋装固化土筑堤技术。即利用滩涂淤泥为原料,添加固化剂充灌袋体作为堤心代替砂石料等常规材料修建围堤。通过对固化土工程特性和袋装固化土围堤在外部荷载作用下的稳定情况进行研究,结合台州已建固化土围堤的经验和试验及检测资料,提出合理的计算方法,为固化土筑堤设计方法的建立提供可靠的依据。  相似文献   
167.
水平旋喷桩施工工艺在深圳地铁施工中的应用   总被引:1,自引:0,他引:1  
郭伟 《现代隧道技术》2012,49(2):114-118,141
在深圳地铁安托山站—侨香站区间矿山法隧道超前支护施工中,由于采用了水平旋喷桩施工工艺,成功地解决了安-侨区间暗挖隧道在饱和粉细砂层及砾砂层中近距离穿越大断面雨水箱涵及φ500 mm次高压燃气管线的难题,节约了施工成本,充分显示了水平旋喷桩施工工艺在富水砂层浅埋暗挖隧道开挖预支护工程应用上的经济优势。文章论述了水平旋喷桩的工艺机理、适应性、优缺点以及在该工程中的应用效果。  相似文献   
168.
文章以陈家田分离式桥现浇连续箱梁满堂钢管支架施工为例,介绍了在山区软质地基上进行现浇预应力连续箱梁满堂钢管支架施工的总体布置方案,并通过支架力学检算验证了施工方案的可行性,同时阐述了支架地基处理、支架装拆及加载预压等施工过程。  相似文献   
169.
陈波  徐成桂 《公路工程》2020,(2):112-115
以某公路土质边坡维护工程作为案例,阐述了SNS柔性防护网的分类及工作原理,从设计方面、施工方面、经济性和环保性等4个方面分别和其他边坡防护技术进行了对比分析。与传统的浆砌片石、锚杆加固、挡土墙等刚性防护措施比较,SNS柔性防护系统不但拥有传统防护技术的预防治理作用,而且可以预防治理坡面常见地质灾害。SNS柔性防护系统秉承“以柔制刚”的理念达到“事倍功半”效益,是一种施工便捷、资金投入相对少,对已有公路以及周边建筑物扰动相对小,对危险落石落土有阻拦作用的新方法。  相似文献   
170.
针对船舶火灾探测误报率高的情况,为提高火灾探测系统的可靠性,提出一种基于支持向量机的多传感器火灾信息融合方法。经过仿真试验证明,通过多传感器探测数据的有效融合,可以大幅提高火灾探测系统的火灾识别率。  相似文献   
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