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Multibody Finite Element Method and Application in Hydraulic Structure Analysis

机译:多体有限元方法及其在水工结构分析中的应用

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Multibody finite element method is proposed for analysis of contact problems in hydraulic structure. This method is based on the block theory of discontinuous deformation analysis (DDA) method and combines advantages of finite element method (FEM) and the displacement compatibility equation in classical elastic mechanics. Each single block is analyzed using FEM in corresponding local coordinate system and all contacting blocks need to satisfy the displacement compatibility requirement between any two blocks in a blocky system. It is proved that this method is very efficient and practical to overcome the limitations in DDA method when tackling contact problems, such as the overlap problem and the equal strain assumption. In this paper, detailed theoretical basis and formulations are given. Two numerical examples are performed to verify the proposed method successfully. Furthermore, this method is adopted to study the stability issues of underground houses of a large hydropower station.
机译:提出了多体有限元方法来分析水工建筑物的接触问题。该方法基于不连续变形分析(DDA)方法的块理论,并结合了有限元方法(FEM)和经典弹性力学中的位移相容方程的优点。在相应的局部坐标系中使用FEM对每个单个块进行分析,并且所有接触块都需要满足块状系统中任意两个块之间的位移兼容性要求。实践证明,该方法在克服接触问题(如重叠问题和等应变假设)时,克服DDA方法的局限性是非常有效和实用的。本文给出了详细的理论基础和公式。通过两个数值例子验证了所提方法的有效性。此外,该方法被用于研究大型水电站地下房屋的稳定性问题。

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