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Numerical Analysis of Degradation Characteristics for Heterogeneous Rock under Coupled Thermomechanical Conditions

机译:热力耦合条件下非均质岩降解特征的数值分析

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The effects of high temperature on rock strength and deformation, and hence the integrity of rock structure, have been a significant issue for rock mechanics and engineering. This article adopts a coupled thermomechanical (TM) solution method to explore the deterioration characteristics of heterogeneous rock under TM conditions. Based on the combination of damage mechanics and plasticity, a coupled material model with consideration of yielding, the plastic flow rule, damage evolution, the thermal effect, and heterogeneity was implemented in a commercial explicit finite-element code, LS-DYNA, through a user-defined material subroutine. Validation simulations indicate that the proposed model is capable of reproducing the mechanical behaviors of rock under unconfined compression and heating conditions. The effects of the heating temperature and homogeneity index on the mechanical properties were also investigated. The results indicate that rock exhibits prominent ductility characteristics with an increase in temperature regardless of the homogeneity index. With the same heterogeneity, monotonic reductions in unconfined compressive strength (UCS) and Young's modulus and an increase in peak strain were observed with an increase in the temperature. A single oblique fracture dominated the failure of the rock with lower homogeneity, whereas two conjugate fractures developed in the rock with more homogeneous strength.
机译:高温对岩石强度和变形的影响,以及对岩石结构完整性的影响,一直是岩石力学和工程学的重要课题。本文采用耦合热力学(TM)求解方法,探讨了TM条件下非均质岩石的劣化特征。基于损伤力学和塑性的组合,通过商业化的显式有限元代码LS-DYNA,通过考虑屈服,塑性流动规则,损伤演化,热效应和异质性的耦合材料模型,通过用户定义的物料子程序。验证仿真表明,所提出的模型能够在无限制的压缩和加热条件下重现岩石的力学行为。还研究了加热温度和均匀度指数对机械性能的影响。结果表明,无论均质指数如何,岩石均表现出随温度升高而突出的延展性。在相同的异质性下,随温度升高,可观察到无侧限抗压强度(UCS)和杨氏模量的单调减少以及峰值应变的增加。单一的倾斜裂缝以较低的均质性主导了岩石的破坏,而岩石中出现了两个强度更高的均匀共轭裂缝。

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