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Analysis of the Three-Dimensional Dynamic Problems by Using a New Numerical Method

机译:用新的数值方法分析三维动态问题

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The problems of the consolidation of saturated soil under dynamic loading are very complex. At present, numerical methods are widely used in the research. However, some traditional methods, such as the finite element method, involve more degrees of freedom, resulting in low computational efficiency. In this paper, the scaled boundary element method (SBFEM) is used to analyze the displacement and pore pressure response of saturated soil due to consolidation under dynamic load. The partial differential equations of linear problems are transformed into ordinary differential equations and solved along the radial direction. The coefficients in the equations are determined by approximate finite elements on the circumference. As a semianalytical method, the application of scaled boundary element method in soil-structure interaction is extended. Dealing with complex structures and structural nonlinearity, it can simulate two-phase saturated soil-structure dynamic interaction in infinite and finite domain, which has an important engineering practical value. Through the research, some conclusions are obtained. The dimension of the analytical problem can be reduced by one dimension if only the boundary surface is discretized. The SBFEM can automatically satisfy the radiation conditions at infinite distances. The 3D scaled boundary finite element equation for dynamic consolidation of saturated soils is not only accurate in finite element sense but also convenient in mathematical processing.
机译:动态载荷下饱和土的饱和土的问题非常复杂。目前,数值方法广泛用于研究。然而,一些传统方法,例如有限元方法,涉及更多程度的自由度,从而导致计算效率低。在本文中,缩放边界元法(SBFEM)用于分析由于动态负荷下的固结引起的饱和土的位移和孔隙压力响应。线性问题的部分微分方程被转换成常微分方程并沿径向求解。等式中的系数由圆周上的近似有限元确定确定。作为半角质方法,延长了缩放边界元法在土结构相互作用中的应用。具有复杂的结构和结构的非线性处理,它可以模拟在无限和有限域,其中有一个重要的工程实用价值两相饱和土结构相互作用。通过研究,获得了一些结论。如果仅离散边界表面,则分析问题的尺寸可以减小一个尺寸。 SBFEM可以自动满足无限距离的辐射条件。用于饱和土的动态固结的3D缩放边界有限元方程不仅是有限元感觉的准确性,而且在数学处理方面也方便。

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