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81.
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
82.
The application of prefabricated tunnel technology has been become a new research field both in China and abroad. Based on the running tunnel between Yufuhe station and Wangfuzhuang station of Jinan rail transit line R1, a new prefabricated tunnel construction technology, the PBA method is presented. This paper makes a detailed discussion on section form, supporting scheme and construction process of the PBA method. In this study, 3D a new 3D numerical model for PBA method is presented by finite difference numerical simulation software Flac and the construction processes are modeled. The rule of ground surface settlement, ground deformation and structural stress caused by PBA method is studied in detail. Results show that the structure of PBA method can effectively control the deformation magnitude and scope. Stress concentration appears at the prefabricated connection parts and the reinforcement needs to check. The total assembled structure forms the load-bearing system after the completion of the lateral wall. The built-in depth of the precast pile and pile bottom grouting quality should to be ensured to control the displacement of the precast piles. The results of this study will be a useful reference for similar projects in the future. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved. 相似文献
83.
Mutual interactions between transportation and land use have long been debated. Despite progress made in computational technology, the study of these interactions is not adequately developed. The most important aspect of such interactions is given by the changes in land values due to changes in transportation infrastructures. We consider the behavioural features of these interactions along with the constraints on the land and/or zoning restrictions and propose a reliable model for the first time to predict land value changes with respect to changes in transportation facilities and accessibility. The proposed model is a logit-based mathematical programming methodology where the relative price of land is predicted with respect to transportation accessibility, neighbourhood amenities, location premium, availability of land, and zoning regulations. A real-world case study is used to exhibit the applicability of the proposed methodology and demonstrate the efficacy of the algorithms and procedures. 相似文献
84.
85.
目前在桥梁船撞防护的专项设计或船撞力专题研究中,对船舶撞击力的研究和桥梁在船舶撞击作用下的响应关注较多,而对船体最大变形量的研究较少。基于ANSYSLS-DYNA软件,对4种不同载质量的内河代表船舶在3种航速、2种碰撞角度下撞击4种墩型的船撞工况进行数值模拟,提取船体最大变形量,并分析船体最大变形量与船舶载质量、撞击速度、桥墩类型及撞击角度的关联性,同时与经验公式做对比。研究结果表明,撞击速度及撞击角度是船体最大变形量的主要控制因素,桥墩类型与之关系不明显。 相似文献
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87.
为研究高桩码头完建后整体温差对基桩内力的影响,结合工程实例,建立三维有限元模型,对上部平台温变规律进行分析,认为斜桩、直桩对上部平台温变约束作用均可忽略不计,平台处于自由温变状态,存在水平位移为零的温变发散中心。基于刚性平台自由温变规律,提出了考虑斜桩码头平动扭转的三维算法,三维算法的桩顶位移、内力与有限元结果接近。对于全直桩或近似对称的斜桩码头,还可简化为平动的二维算法。并给出了直桩、斜桩内力的估算简式,由估算式可知,位于发散同心圆上的直桩内力大于斜桩内力,桩顶轴力、弯矩与桩径2次、4次方成正比,桩径对温差内力的影响显著。 相似文献
88.
应用两个广义位移梁理论,研究了有限长圆柱截面梁间的接触问题,得到了计算有限长圆柱截面梁间接触压力和变形的近似解析公式.通过实例计算,与传统方法及有关试验结果进行了比较,证明传统方法误差较大,而本文中导出的计算公式比较精确. 相似文献
89.
基于等效线性模型,采用三维非线性动力有限元法对拟建金佛山混凝土面板堆石坝进行了地震动力反应分析,重点研究了坝体在地震荷载作用下的加速度反应、动应力反应、地震永久变形的规律和分布。计算结果表明:坝顶附近加速度反应较大,应采取相应的抗震工程措施;坝体动应力反应较小;坝体残余变形不大;大坝整体抗震性能较好,满足给定地震下的抗震安全性要求。 相似文献
90.
旧堡隧道穿越太古代变质岩系,构造发育、岩体破碎,地质条件极差。隧道于DK28+380~DK29+630段穿过断层及其影响带,施工过程中多次发生溜渣突泥突水塌方并引起初支大变形,严重影响施工安全及工程进度。结合该段地质条件,从围岩岩性特点、岩体结构特征、多期构造运动叠加及地下水共同作用等几个方面,探讨该隧道大变形的原因和机制,并阐述了后期施工中采取的加强结构支护、注浆加固、增设临挡护墙等处理对策,对类似工程地质条件地区隧道施工支护有一定的借鉴意义。 相似文献