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General coupling of porous flows and hyperelastic formulations - From thermodynamics principles to energy balance and compatible time schemes

机译:多孔流与超弹性配方的一般耦合-从热力学原理到能量平衡和兼容的时间方案

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We formulate a general poromechanics model - within the framework of a two-phase mixture theory - compatible with large strains and without any simplification in the momentum expressions, in particular concerning the fluid flows. The only specific assumptions made are fluid incompressibility and isothermal conditions. Our formulation is based on fundamental physical principles - namely, essential conservation and thermodynamics laws - and we thus obtain a Clausius-Duhem inequality which is crucial for devising compatible constitutive laws. We then propose to model the solid behavior based on a generalized hyperelastic free energy potential - with additional viscous effects - which allows to represent a wide range of mechanical behaviors. The resulting formulation takes the form of a coupled system similar to a fluid-structure interaction problem written in an Arbitrary Lagrangian-Eulerian formalism, with additional volume-distributed interaction forces. We achieve another important objective by identifying the essential energy balance prevailing in the model, and this paves the way for further works on mathematical analyses, and time and space discretizations of the formulation.
机译:我们在两相混合理论的框架内制定了一个通用的动力力学模型,该模型与大应变兼容,并且动量表达式没有任何简化,特别是在流体流动方面。做出的唯一特定假设是流体不可压缩性和等温条件。我们的表述基于基本的物理原理,即基本的守恒律和热力学定律,因此我们得出了克劳修斯-杜海姆不等式,这对于设计相容的本构律至关重要。然后,我们建议基于广义的超弹性自由能势-具有附加的粘滞效应-对固体行为进行建模,这可以代表广泛的机械行为。最终的公式采用耦合系统的形式,类似于以任意拉格朗日-欧拉形式主义写的流体-结构相互作用问题,并具有附加的体积分布的相互作用力。通过确定模型中普遍存在的基本能量平衡,我们实现了另一个重要目标,这为进一步开展数学分析和公式的时间和空间离散化铺平了道路。

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