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首页> 外文期刊>Advances in Engineering Software >Stress Recovery Procedure For Discontinuous Deformation Analysis
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Stress Recovery Procedure For Discontinuous Deformation Analysis

机译:不连续变形分析的应力恢复程序

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The discontinuous deformation analysis (DDA) has been widely applied for rock engineering problems due to its special features in modeling the discontinuous rock mass. A linear polynomial function is often used in the standard DDA to ease the complex contact determination between the blocks. This linear displacement function generates a constant stress field within a block, which cannot be effectively used to model the stress variation within a block and across the block interface, especially in the region with a large stress gradient. In this paper, a stress recovery procedure is proposed for those DDA blocks which are glued together. Such a procedure can improve the stress accuracy along the block interface, and can be used for more accurate contact determination. Two numerical examples are presented to study the stress accuracy of the proposed method, and the results show that the proposed stress recovery method provides a better accuracy than the direct DDA and the averaging method.
机译:由于不连续变形分析(DDA)具有对不连续岩体进行建模的特殊功能,因此已广泛应用于岩石工程问题。标准DDA中经常使用线性多项式函数来简化块之间的复杂接触确定。该线性位移函数在块体内产生恒定的应力场,该应力场不能有效地用于对块内以及跨块界面的应力变化进行建模,尤其是在应力梯度较大的区域中。本文针对胶合在一起的DDA块提出了应力恢复程序。这样的过程可以改善沿着块界面的应力精度,并且可以用于更精确的接触确定。给出了两个数值算例,研究了该方法的应力精度,结果表明,所提出的应力恢复方法比直接DDA法和平均法具有更高的精度。

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