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Efficient and realistic 3-D boundary element simulations of underground construction using isogeometric analysis

机译:使用异构分析的地下施工高效逼真的三维边界元模拟

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The paper outlines some recent developments of the boundary element method (BEM) that makes it more user friendly and suitable for a realistic simulation in geomechanics, especially for underground excavations and tunnelling. The innovations refer to the introduction of isogeometric concepts, elasto-plastic analysis and the simulation of ground support. The introduction of isogeometric concepts for the description of the excavation boundaries results in less user and analysis effort, since complex geometries can be modelled with few parameters and degrees of freedom. No mesh generation is necessary. Heterogeneous and inelastic ground conditions are considered via general inclusions and rock bolts via linear inclusions. A comparison of results of test examples with other numerical methods and analytical solutions confirm the efficiency and accuracy of the proposed implementation. A practical example with a complex geometry is presented.
机译:本文概述了边界元素方法(BEM)的一些最新发展,使其更加用户友好,适用于地质力学的现实模拟,特别是对于地下挖掘和隧道。 该创新是指ISOGEORIC概念,弹塑性分析和地面支撑仿真的引入。 对于挖掘边界描述的ISogeometric概念引入导致较少的用户和分析工作,因为复杂的几何形状可以用很少的参数和自由度进行建模。 没有网格生成是必要的。 通过线性夹杂物通过一般夹杂物和岩石螺栓考虑异质和非弹性地面条件。 与其他数值方法和分析解决方案的试验例子结果的比较证实了建议实施的效率和准确性。 提出了具有复杂几何形状的实际示例。

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