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71.
根据我国及日本海上CDM施工实例以及有关资料,论述了海上CDM工法有关拌和用水和水灰比、室内配合比试验与设计强度、地基的隆起及预估、隆起土的有效利用、穿透硬夹层和硬质地基着底施工、搭接与冷缝的处理等技术问题。对海底深层水泥搅拌加固地基工程的设计和施工具有参考价值。 相似文献
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通过建立两相饱和地基下桩-土耦合系统的动力分析有限元数值模型,对饱和自由场地基以及桩柱结构在地震作用下的动力响应进行数值模拟研究。结果表明:在地震作用下超孔隙水压沿深度方向呈现出指数衰减趋势,在地表处更易导致地基液化从而散失承载能力。随着超孔隙水压的上升土体强度降低后,饱和地基土层对地震波的高频成分有明显的选择性滤波作用。在桩柱结构地震响应分析中,受桩土间动力耦合作用的影响,桩侧土体比远场地基土更易液化。随着地基承载力的降低,导致桩柱动力以及弯矩响应上升。研究结果与已有桩基础震害经验相符,其方法和结论可对饱和可液化地基抗震工程提供参考。 相似文献
74.
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
75.
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
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浅埋暗挖地铁隧道施工监测方法 总被引:3,自引:0,他引:3
文章以重庆市地铁一号线大坪车站临时施工便道为例,对在浅埋、软岩条件下既有隧道拆除采用工字钢支顶、风镐破岩,新建隧道采用台阶法环形开挖预留核心土、人工非爆破开挖的施工方法,通过现场监控量测,得出最大地表沉降仅为3.82mm,表明采用合理的施工方法可以减少地表沉降。 相似文献
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随着我国现阶段的公路建设里程不断增长,相较于常规平原地区,高寒冻土区公路建设过程要克服冻土路基带来的各类不良影响.针对热扰动对冻土区片块石路基带来的影响进行深入研究,在分析该区域高等级公路路基状态的过程中,采集片块石路基的温度状态、吸放热状态和冻融循环状态等方面数据,探讨了其热状态变化的整体规律.研究结果显示:片块石路... 相似文献
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