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Mechanical Behaviors of Submerged Floating Tunnel under Current Effect

机译:电流作用下潜浮隧道的力学行为

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In order to provide a technical reference and guidance for the safety and stability analysis of the submerged floating tunnel (SFT) in the future, the mechanical behaviors of SFT under the action of water current with different velocities were studied by experiments on an SFT tube model made of rubber. Then, a numerical simulation on the coupling interaction between SFT and water current was conducted by finite element method (FEM). The comparison between the results obtained from experiment and those derived from the numerical simulation shows that the experimental results approximately tally with the simulations! ones. As a result, the relationships between water current velocities and the mechanical behaviors of tube, such as the annular and axial strains, internal forces (axial force and bending moment), and deformations of the tube structure and the forces borne by the tension cables, were concluded.
机译:为了将来为潜水浮道(SFT)的安全性和稳定性分析提供技术参考和指导,通过在SFT管模型上的实验研究了在不同流速的水流作用下SFT的力学行为。橡胶制成。然后,通过有限元方法对SFT与水流之间的耦合相互作用进行了数值模拟。从实验获得的结果与从数值模拟得出的结果之间的比较表明,实验结果与模拟结果基本吻合!那些。结果,水流速度与管的机械性能之间的关系,例如环形和轴向应变,内力(轴向力和弯矩),管结构的变形和拉力电缆所承受的力,得出结论。

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