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. In order to consider heterogeneous and inelastic ground conditions a domain discretisation is used but the use of isogeometric methods results in a minimum of user effort. Efficient methods are also presented for modelling rock bolts. 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.
翻译:论文概述了边界要素方法(BEM)最近的一些发展,使该方法更方便用户,更适合在地质机械中进行现实模拟,特别是地下挖掘和隧道挖掘。创新是指采用等离子测量概念、等离子细胞塑料分析和地面支持模拟。在描述挖掘边界时采用等离子测量概念,减少了用户和分析努力,因为复杂的地貌可以以很少的参数和自由度为模范。不需要生成网状数据。为了考虑不同和无弹性的地面条件,使用了一个域离散,但使用等离子测量方法可以尽量减少用户的努力。还介绍了模拟岩石螺栓的有效方法。将试验实例与其他数字方法和分析解决办法的结果进行比较,以证实拟议的实施的效率和准确性。介绍了一个复杂的几何方法的实用例子。