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An Analytical Solution for Stress and Displacement Field for Arbitrarily Positioned Twin-Tunnel Excavation at Great Depth

机译:大深度任意位置双隧洞开挖应力与位移场的解析解

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摘要

In this study, an analytical solution for the stress and displacement field for arbitrarily positioned twin-tunnel excavation at great depth is proposed. The twin-tunnel is subjected to equivalent loads on the tunnel periphery and uniform loads at infinity. The analytical continuation of the complex variable method is used for stress "stair", owing to the equivalent loads of the tunnel support. Subsequently, the Schwarz alternating method and Cauchy integral formula are used. The redundant surface forces on the periphery are expanded into Laurent series in the sequence of iterations, and a reasonable series truncation is adopted. Comparing with several existing solutions covering special cases from different perspectives, it is found that the proposed solution meets accuracy requirements for tunnel center distance greater than 2.2 times tunnel radius after 1.5 iterations. The proposed solution is fast and yields reference value to tunnel engineering.
机译:在这项研究中,提出了一种在深处任意位置进行双隧道开挖的应力和位移场的解析解。双隧道在隧道外围承受相等的载荷,在无限远处承受均匀的载荷。由于隧道支座的等效载荷,复变量方法的解析连续性用于应力“阶梯”。随后,使用了Schwarz交替法和柯西积分公式。外围的多余表面力按迭代顺序扩展为Laurent级数,并采用合理的级数截断法。与从不同角度涵盖特殊情况的几种现有解决方案进行比较,发现所提出的解决方案满足1.5次迭代后大于2.2倍于隧道半径的隧道中心距离的精度要求。所提出的解决方案是快速的,并且对隧道工程具有参考价值。

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