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Influence of the depth and shape of a tunnel in the application of the convergence-confinement method

机译:收敛约束法应用中隧道深度和形状的影响

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摘要

One of the most widely used methods in tunnel support analysis and design is the convergence-confinement method (CCM). For its practical application, it is necessary to study the influence of the depth and cross-section of the tunnel and to confirm the calculations with two- or three-dimensional simulations carried out with finite elements or explicit finite differences programs. These simulations require elevated calculation times. In this paper, a modification of the CCM is proposed that directly introduces the effect of depth and the shape of the tunnel cross-section in the determination of the radial displacement of the tunnel. To do so, a series of functions are determined that approximate the radial displacement at points situated on the perimeter of the cross-section of the tunnel, considering several cross-sections at different distances from the working face. Should the cross-section of the tunnel or its depth be modified, it will not be necessary to perform new numerical simulations in order to apply the CCM. It will only be necessary to use the calculated shape functions. It is thus possible to use the CCM in the analysis and design of the support elements in a quite precise and significantly faster way.
机译:隧道约束分析和设计中使用最广泛的方法之一是收敛约束方法(CCM)。对于其实际应用,有必要研究隧道的深度和横截面的影响,并用有限元或显式有限差分程序进行的二维或三维模拟来确认计算结果。这些模拟需要更长的计算时间。在本文中,提出了一种对CCM的修改,直接引入了深度和隧道横截面形状对确定隧道的径向位移的影响。为此,考虑到距工作面不同距离的多个横截面,确定了一系列函数,这些函数近似于位于隧道横截面周长上的点处的径向位移。如果应修改隧道的横截面或其深度,则无需进行新的数值模拟即可应用CCM。仅需要使用计算出的形状函数。因此有可能以非常精确且明显更快的方式在支撑元件的分析和设计中使用CCM。

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