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Three Dimensional Numerical Analysis of Underground Bifurcated Tunnel

机译:地下分岔隧道的三维数值分析

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As far as the bifurcated tunnel of underground engineering is concerned, it is usually used in the water conveyance system. Due to the complexity of underground rock masses and concrete lining, researches on mechanical characteristic and stability of the bifurcation tunnel have attracted more and more attention in the geotechnical field. In order to understand bifurcated tunnel in detail, three-dimensional (3D) numerical method is applied to solve the above key subjects by simulating a practical project. Furthermore, sub-model technology is applied to analyze the intersection position, corresponding deformation and stress results in the practical condition. Meanwhile, 3D excavation and support calculation under four conditions have been simulated based on 3D self-compiled code and Ansys software. In addition, the paper plays emphasis on the stress, displacement analysis considering different stress releasing ratio instead of rheological analysis, and the results corresponding with the fact indicate the feasibility of 3D elasto-visco-plastic code.
机译:就地下工程的分岔隧道而言,它通常用于输水系统中。由于地下岩体和混凝土衬砌的复杂性,对分岔隧道的力学特性和稳定性的研究在岩土工程领域引起了越来越多的关注。为了详细理解分岔隧道,通过模拟实际工程,采用三维(3D)数值方法来解决上述关键问题。此外,在实际情况下,采用子模型技术对相交位置,相应的变形和应力结果进行分析。同时,基于3D自编译代码和Ansys软件对4种情况下的3D开挖和支护计算进行了仿真。另外,本文着重于应力,位移分析,考虑了不同的应力释放比,而不是流变分析,与结果相对应的事实表明了3D弹-粘塑性编码的可行性。

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