首页> 外文期刊>International journal of geomechanics >Numerical Approach to Creep of Rock Based on the Numerical Manifold Method
【24h】

Numerical Approach to Creep of Rock Based on the Numerical Manifold Method

机译:基于数值流形方法的岩石蠕变数值方法

获取原文
获取原文并翻译 | 示例
           

摘要

The creep behaviors of stressed rock are of great practical significance because time-dependent deformation processes can lead to stable dissipation of energy, thereby reducing violent rockbursts or outbursts in underground mines. The numerical manifold method (NMM) is an effective approach to studying the nonlinear creep deformation of rock since it involves the continuous deformation of intact rock, as well as the discontinuous deformation of cracked rock. In this paper, the incremental viscoelastoplastic constitutive relation based on the extended Nishihara model (ENM) has been incorporated into the NMM to study creep deformation of stressed rock. First, an incremental viscoelastoplastic NMM formulation was derived to perform the treatments in the NMM. Using a time-step-initial strain method, viscous strain and the large timescales of typical creep were divided into a series of incremental time-step values in the improved NMM program to calculate the creep deformation of rocks. Parameter sensitivity analysis, which can reveal the influence of different parameters on the creep of rocks, was performed for the improved NMM program, and then the improved NMM program was validated against experimental data. Finally, the influence of axial stress and confining pressure on the creep of rocks was investigated. The fact that numerical simulations were in good agreement with experimental results shows that improving the NMM by combining it with the ENM is suitable for modeling the creep behavior of rocks.
机译:受应力岩石的蠕变行为具有重要的现实意义,因为随时间变化的变形过程可以稳定地耗散能量,从而减少地下矿井中剧烈的岩爆或突出。数值流形方法是研究岩石的非线性蠕变变形的有效方法,因为它涉及完整岩石的连续变形以及裂隙岩石的不连续变形。在本文中,基于扩展Nishihara模型(ENM)的增量粘弹塑性本构关系已被纳入NMM中,以研究受应力岩石的蠕变变形。首先,获得了增量粘弹塑性NMM配方以在NMM中进行治疗。在改进的NMM程序中,使用时间步长初始应变方法,将粘性应变和典型蠕变的大时标分为一系列增量时间步长值,以计算岩石的蠕变变形。针对改进的NMM程序进行了参数敏感性分析,可以揭示不同参数对岩石蠕变的影响,然后针对实验数据验证了改进的NMM程序。最后,研究了轴向应力和围压对岩石蠕变的影响。数值模拟与实验结果吻合的事实表明,通过将NMM与ENM结合来改进NMM适于对岩石的蠕变行为进行建模。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号