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Stability of Asymmetric Roof Wedge Under Non-Symmetric Loading

机译:非对称荷载下非对称屋檐的稳定性

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摘要

An analytical method is presented for the calculation of the load carrying capacity of two-dimensional asymmetric rock wedges when the loading on the joint faces is non symmetric, such as the case of an asymmetric wedge formed in the roof of a circular tunnel in an inclined stress field. The pull out force that causes yield at one of the joint faces is evaluated from formulae based on the limiting equilibrium conditions assuming a purely frictional joint resistance. Next, the total pull out force required for the secondary face to yield is calculated. During this step, the wedge is further displaced and while the primary yielding face is plastically deformed, the other face is still in the elastic range until failure. Validation of the analytical procedure is obtained with the UDEC code, which provides an implementation of the Distinct Element Method in two dimensions. When the assumptions made in the analytical procedure are valid, the analytically calculated values for the pull out resistance of the wedge are computed to be close to the numerically obtained ones.
机译:提出了一种分析方法,计算了节理面上的荷载非对称时二维非对称岩楔的承载能力,例如圆形隧道顶棚中倾斜形成非对称楔的情况。应力场。在假定纯摩擦接头阻力的情况下,基于极限平衡条件,可根据公式根据公式对导致在一个接头面处产生屈服的拉力进行评估。接下来,计算出次级面屈服所需的总拉力。在此步骤中,楔块会进一步移位,并且在主屈服面塑性变形的同时,另一面仍处于弹性范围内,直到失效。分析程序的验证是通过UDEC代码获得的,该代码在两个维度上提供了“不同元素方法”的实现。当分析程序中的假设成立时,计算得出的楔块抗拔力的分析计算值将接近于所获得的数值。

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