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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >The importance of Thermo-Hydro-Mechanical couplings and microstructure to strain localization in 3D continua with application to seismic faults. Part I: Theory and linear stability analysis
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The importance of Thermo-Hydro-Mechanical couplings and microstructure to strain localization in 3D continua with application to seismic faults. Part I: Theory and linear stability analysis

机译:热工-水力-机械耦合和微观结构对于3D连续性中应变局部化的重要性以及在地震断层中的应用。第一部分:理论与线性稳定性分析

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摘要

A Thermo-Hydro-Mechanical (THM) model for Cosserat continua is developed to explore the influence of frictional heating and thermal pore fluid pressurization on the strain localization phenomenon. A general framework is presented to conduct a bifurcation analysis for elasto-plastic Cosserat continua with THM couplings and predict the onset of instability. The presence of internal lengths in Cosserat continua enables to estimate the thickness of the localization zone. This is done by performing a linear stability analysis of the system and looking for the selected wavelength corresponding to the instability mode with fastest finite growth coefficient. These concepts are applied to the study of fault zones under fast shearing. For doing so, we consider a model of a sheared saturated infinite granular layer. The influence of THM couplings on the bifurcation state and the shear band width is investigated. Taking representative parameters for a centroidal fault gouge, the evolution of the thickness of the localized zone under continuous shear is studied. Furthermore, the effect of grain crushing inside the shear band is explored by varying the internal length of the constitutive law.
机译:建立了Cosserat连续体的热-水力-力学(THM)模型,以研究摩擦加热和热孔流体加压对应变局部化现象的影响。提出了一个通用框架来进行带有THM耦合的弹塑性Cosserat连续体的分叉分析,并预测不稳定性的发作。 Cosserat连续体内部长度的存在使得能够估计定位区域的厚度。这是通过对系统执行线性稳定性分析并寻找与具有最快有限增长系数的不稳定性模式相对应的选定波长来完成的。这些概念被应用于快速剪切作用下的断层带研究。为此,我们考虑剪切饱和无限颗粒层的模型。研究了THM耦合对分叉状态和剪切带宽度的影响。以质心断层泥为代表参数,研究了连续剪切作用下局部区域厚度的演化。此外,通过改变本构定律的内部长度,探索了剪切带内部的晶粒破碎效应。

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