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首页> 外文期刊>International journal of geomechanics >Calibration of Microscopic Penalty Parameters in the Combined Finite-Discrete-Element Method
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Calibration of Microscopic Penalty Parameters in the Combined Finite-Discrete-Element Method

机译:校准组合有限离散 - 元素法中的显微损伤参数

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摘要

With unique advantages in simulating solid fracture, the combined finite-discrete-element method has become increasingly popular in the rock mechanics field. Nevertheless, a large number of microscopic parameters in the method need to be specified and many of them cannot be directly measured via laboratory tests. Therefore, these parameters must be determined via a calibration procedure. To calibrate appropriate microscopic parameters, we should find the relationship between them and the macroscopic mechanical response. In these microscopic parameters, the normal and tangential penalty parameters play a very important role. Thus, in this paper we study the effect of penalty parameters on macroscopic mechanical parameters in the combined finite-discrete-element method. It is found that as the penalty parameters increase, the elastic modulus and Poisson's ratio gradually approach the experimental values. However, the further increase of penalty parameters has little effect on the elastic modulus and Poisson's ratio when they reach 100 times the elastic modulus. Based on this conclusion, a simple method for the calibration of penalty parameters is proposed, which can be used to quickly determine the penalty parameters according to the uniaxial compression test.
机译:在模拟固体骨折方面具有独特优势,在岩石力学领域变得越来越受欢迎。然而,需要指定该方法中的大量显微镜参数,并且其中许多不能通过实验室测试直接测量。因此,必须通过校准过程确定这些参数。为了校准适当的微观参数,我们应该找到它们之间的关系和宏观机械反应。在这些微观参数中,正常和切向的惩罚参数起着非常重要的作用。因此,在本文中,我们研究了惩罚参数对组合有限离散元件中宏观机械参数的影响。结果发现,随着惩罚参数的增加,弹性模量和泊松比逐渐接近实验值。然而,当达到100倍的弹性模量时,刑罚参数的进一步增加对弹性模量和泊松比的影响几乎没有影响。基于该结论,提出了一种校准惩罚参数的简单方法,可用于根据单轴压缩测试快速确定惩罚参数。

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