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A two-phase model for compaction and damage 2. Applications to compaction, deformation, and the role of interfacial surface tension

机译:压实和破坏的两阶段模型2.压实,变形和界面表面张力作用的应用

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New equations for the dynamics of a two-phase mixture are derived in a companion paper [Bercovici et al., this issue (a)]. These equations do not invoke a bulk viscosity as most previous papers have done, and use the existence of the pressure difference between the two phases, including the possibility of surface energy at the interface between the phases. In this paper we show how a two-phase mixture reacts to simple stress fields. As a basic example, we discuss the deformation of a porous material confined by an impermeable jacket and loaded by a porous piston and show that the fluid can never be totally extracted from the matrix. We demonstrate that an unconfined porous sample is stronger under shear deformation than under normal stress. We consider spherically symmetric compaction and show that some unphysical results obtained using a constant matrix bulk viscosity are naturally avoided in our approach. We discuss the problem of compaction of a two-phase liquid in the presence of surface tension. In a one-dimensional simulation the surface tension generates porosity instabilities that tend to localize the fluid into narrow sills and dikes that cannot reach the surface. [References: 36]
机译:伴随论文[Bercovici等,本期(a)]中导出了两相混合物动力学的新方程。这些方程式不会像大多数先前的论文那样调用体积粘度,而是利用两相之间存在压差,包括在两相之间的界面处存在表面能的可能性。在本文中,我们展示了两相混合物对简单应力场的反应。作为一个基本示例,我们讨论了由不可渗透的夹层限制并由多孔活塞加载的多孔材料的变形,并表明流体永远无法从基质中完全提取出来。我们证明了无限制的多孔样品在剪切变形下比在正应力下更强。我们考虑了球对称压实,并表明在我们的方法中自然避免了使用恒定基体体积粘度获得的一些非物理结果。我们讨论了在存在表面张力的情况下两相液体的压实问题。在一维模拟中,表面张力产生孔隙度不稳定性,该孔隙度不稳定性倾向于使流体局部化为无法到达表面的狭窄基石和堤坝。 [参考:36]

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