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Symplectic Elasticity Analysis of Stress in Surrounding Rock of Elliptical Tunnel

机译:椭圆隧道周围岩石应力的辛弹性分析

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A large number of non-circular tunnels are widely used in engineering practice. The application of these geometric structures not only makes the boundary conditions of mechanical problems more complex, but also makes the theoretical solution more difficult. The introduction of curvilinear coordinate system can easily transform the elliptical region into a circular region, and the physical relationship can also be adjusted accordingly. In the state space, the transformed problem can be solved by using the dual variables of Hamiltonian mechanics, and the special solution equation can be obtained. With regard to the non-homogeneous boundary conditions of general engineering problems, Fourier expansion is used to transform them into algebraic sums. According to the special solution equation, the relationship between the direction eigenvalues and the angle coefficients of each order of the expansion term is found. Then the analytical solution of the non-homogeneous problem is obtained by superposing the special solutions of the expansion terms of each order. By comparing the calculation results of the boundary stress around the elliptical tunnel, it can be seen that the results are completely consistent with the finite element calculation results, which verifies the correctness and reliability of the method in this paper. This paper analyzes the influence of internal pressure, lateral pressure coefficient and elliptical shape coefficient on the circumferential stress around the elliptical hole, and obtains the following conclusions: increasing the internal pressure of the elliptical hole can effectively reduce the circumferential compressive stress at the hole edge; when the lateral pressure coefficient approaches 1, the circumferential stress distribution around the elliptical hole tends to be uniform; the minimum value of the circumferential stress around the elliptical hole is independent of the shape coefficient, while the maximum value is closely related to the shape coefficient. The research results can not only provide specific theoretical guidance for the construction and construction of elliptical tunnel, but also expand the application scope of the symplectic elasticity method.
机译:大量非圆形隧道广泛用于工程实践。这些几何结构的应用不仅使得机械问题的边界条件更复杂,而且还使理论解决方案更加困难。曲线坐标系的引入可以容易地将椭圆区域变换成圆形区域,并且也可以相应地调节物理关系。在状态空间中,通过使用Hamiltonian力学的双变量可以解决变换的问题,并且可以获得特殊的解决方案。关于通用工程问题的非均匀边界条件,傅里叶扩展用于将它们转换为代数。根据特殊的解决方案,找到了膨胀项的每个阶的方向特征值与角度系数之间的关系。然后通过叠加每个订单的扩展项的特殊解决方案来获得非均匀问题的分析解决方案。通过比较椭圆隧道周围边界应力的计算结果,可以看出,结果与有限元计算结果完全一致,这验证了本文中该方法的正确性和可靠性。本文分析了内部压力,横向压力系数和椭圆形系数在椭圆孔周围的周向应力的影响,并获得了以下结论:增加椭圆孔的内部压力可以有效地降低孔边缘处的周向压缩应力;当横向压力系数接近1时,椭圆孔周围的周向应力分布趋于均匀;椭圆孔周围的周向应力的最小值与形状系数无关,而最大值与形状系数密切相关。研究结果不仅可以为椭圆隧道的建设和构建提供特定的理论指导,还可以扩大辛弹性方法的应用范围。

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