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91.
以沪通大桥沉井为背景,设计完成了深水大截面沉井下沉模拟试验。模拟了沉井在水中不排水吸泥下沉的过程,并分析了沉井在下沉过程中刃脚踏面和斜面应力在空间上的分布规律,得出沉井角点处应力最大,长边中点处最小,短边平均应力大于长边的结论。以长边中点为基准应力,确定了长宽比为1.33时刃脚全截面的应力系数。刃脚斜面上应力除受空间位置影响外还与泥面高度相关,且变化规律与踏面应力相反。当泥面高度确定后,用三次函数确定其应力分布。讨论了倾斜、翻砂突沉对刃脚受力的影响,得出两者均会引起刃脚空间受力分布的改变。发现沉井翻砂和突沉前后刃脚踏面应力、斜面应力、刃脚处水力梯度均会发生明显的变化,且变化趋势均早于沉井翻砂和突沉的发生,对沉井翻砂和突沉的预警有重要意义。 相似文献
93.
浅层岩溶土洞塌陷和浅埋隧道施工等时常会引发浅层地基出现局部沉陷,导致地基可能承受不完全土拱效应作用。如何定量分析不完全土拱效应对浅层地基竖向应力的影响尤为重要。统计了国内外浅层活动门试验,将浅层地基滑移面概化为塔形,同时考虑了浅层地基不同深度处土层差异沉降及主应力偏转过程。通过建立主应力偏转角与活动门相对位移之间的数量关系,量化了浅层地基不同深度对应的不完全土拱效应发挥程度,优化了考虑不完全土拱效应的浅层地基竖向应力计算方法。分析了主要参数对不完全土拱效应的影响,结果表明,随着浅层活动门高宽比及相对位移的增大,应力转移量增加,土体有效内摩擦角及滑移面倾角则相反。可为局部沉降作用下的浅层地基竖向应力计算提供理论指导。 相似文献
94.
Shuwang Yan Jingjing Zhang Jian Chu Zhiliang Huo 《Marine Georesources & Geotechnology》2017,35(3):435-440
Concrete suction caissons have been successfully used as breakwaters or seawalls in recent years. The relative large wall thickness-to-diameter ratio of a concrete caisson can lead to the formation of a full soil heave plug that may cause difficulties in the installation of concrete caisson in clay. One way to overcome this limitation is to use a tampered tip for the caisson wall. An analytical method is proposed in this article to calculate the minimum suction pressure required to penetrate a caisson and the maximum allowable suction pressure that can be applied to avoid too much soil heave plug during the installation of the suction caisson. Four model tests were conducted in normally consolidated clay to study the installation process of a concrete suction caisson with tampered tip and to verify the proposed analytical method. The height of the soil heave plug in the caisson with a tampered tip is observed to be about half of that in the caisson with a flat tip. 相似文献
95.
The scour behavior of cushioned caisson constructed on reinforced ground, which is used to support superstructure constructed in deep water in seismic zones, was investigated by experimental and numerical methods. Flume tests under nine different flow velocities between 18 and 48?cm/s were performed based on hydraulic similarity design. Complementary numerical simulations were also conducted for the flow velocities ranging from 16 to 46?cm/s. Five typical working modes of the foundation under erosion, namely, ideal working, well working, edge failure, shear failure, and total failure, are analyzed together with their potential impacts on seismic-designed foundation. The critical shear stress, local flow structures, and streamlines were used as the key factors to analyze the change of bed materials and the scour characteristics. Fluid–solid interaction model was built by computational fluid dynamics with sediment transport model, and k–ε turbulent model has been implemented to describe the turbulence in the fluid phase typical of scour process. The mechanisms of two possible failure models for the foundation layer elements were identified, based on which recommendations were provided for scour protection to ensure the integrity and performance of seismic-designed foundations. The integrated computational model and model experiments also demonstrate a framework to understand the local scour mechanism for the cushioned caisson on reinforced ground. 相似文献
96.
97.
输电杆塔和风电机组基础主要承受上部结构倾覆弯矩荷载,倾覆承载性能是该类基础设计中的关键问题。针对饱和软黏土地基中的杆式结构桶形基础,通过开展位移控制循环加载、位移维持加载、力控制循环加载和单调静力加载离心模型试验,研究其倾覆承载能力。试验发现,当桶形基础达到极限承载力时其转动中心位置约在桶盖正下方0.8倍桶裙高度处;当循环倾覆弯矩幅值与极限抗弯承载力比值小于3/5时,桶形基础在循环过程中转角的累积难以持续增长,并逐渐趋于稳定;循环加载作用下土与结构相互作用刚度出现明显弱化,所获得的桶形基础循环弱化因子阈值约为0.15;位移维持加载的峰值荷载-位移曲线与单调静力加载的荷载-位移曲线较为一致,位移维持加载的谷值荷载-位移曲线对应的承载力较峰值荷载-位移曲线对应的承载力明显偏小,减少约30%~40%。 相似文献
98.
Quantitative Analysis of Groundwater Flow near a Partially Penetrating River under Riverside Pumping
WANG Bingchen ZHENG Xilai QIAN Hui LIN Guoqing XU Qian Comprehensive Institute of Geotechnical Survey Beijing Institute of Environmental Science Engineering China Ocean University Qingdao Shandong Department of Water Resources Chang''an University Xi''an Shaanxi 《《地质学报》英文版》2004,78(3):820-824
According to practical geological and hydrogeological conditions of riverside water-supply well fields in northwestern China, an ideal hydrogeological model has been generalized and a three-dimensional mathematical model has been set up. A finite difference method was applied to simulating groundwater flow near a partially penetrating river under riverside pumping, and to analyzing the effects of river width, partial penetration and permeability of riverbed sediments on groundwater recharges. Results show that riverside pumping may cause groundwater to flow beneath the partially penetrating river, and that river width, penetration and riverbed permeability obviously influence flows from the partially penetrating river and constant-head boundaries. However, the pumping output is mainly from the partially penetrating river. 相似文献
99.
100.