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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Combining Finite Element and Analytical methods to Contact Problems of 3D Structure on Soft Foundation
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Combining Finite Element and Analytical methods to Contact Problems of 3D Structure on Soft Foundation

机译:组合有限元和分析方法与软基3D结构的接触问题

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The computational efficiency and nonconvergence of the iteration are two main difficulties in contact problems, especially in the creep of the foundation. This paper proposes a method to analyze the structural soft foundation system affected by time. The methodology is an explicit method, combining the finite element method with the analytical method. The creep deformation of soft foundation is obtained based on Laplace transforms. The structural deformation contains the statically determinate structural deformation and rigid body displacement, solved by the finite method. The contact forces are calculated by the deformation coordination equations and equilibrium equations. The methodology is validated through augmented Lagrangian (AL) method. The results can clearly illustrate the local disengagement phenome, greatly overcome the nonconvergence of the iteration, and significantly improve computing efficiency.
机译:迭代的计算效率和非计金是接触问题的两个主要困难,尤其是在基础的蠕变中。本文提出了一种分析受时间影响的结构软基系统的方法。该方法是一种明确的方法,将有限元方法与分析方法组合。基于拉普拉斯变换获得软基的蠕变变形。结构变形含有通过有限法解决的静态测定的结构变形和刚性体位移。接触力由变形配位方程和平衡方程计算。该方法通过增强拉格朗日(AL)方法进行了验证。结果可以清楚地说明局部脱离缺陷,极大地克服了迭代的非计因,并显着提高计算效率。

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