Physics Group, Department ATV, Wageningen University, Bomenweg 2, 6703 HD Wageningen, The Netherlands.
Adv Colloid Interface Sci. 2010 Jan 15;153(1-2):58-69. doi: 10.1016/j.cis.2009.12.003. Epub 2010 Jan 6.
GENERIC is a nonequilibrium thermodynamic formalism in which the dynamic behavior of a system is described by a single compact equation involving two types of brackets: a Poisson bracket and a dissipative bracket. This formalism has proved to be a very powerful instrument to model the dynamic behavior of complex bulk phases. In this paper we review the basic principles of the GENERIC formalism, and show how it can be applied to multicomponent multiphase systems with interfaces displaying viscous stress deformation behavior. The generalization of the GENERIC formalism to multiphase systems provides a powerful tool to model nonlinear dynamic behavior of complex interfaces in for example emulsions or foam. Adding several interfacial contributions to the standard two-bracket formulation we derive the conservation laws for mass, momentum, and energy for the bulk phases of the system. We also derive the jump balance equations for the surface mass density, surface momentum, and surface energy. In addition to these balance equations we obtain constitutive equations for the extra stress tensor, energy flux vector, and mass flux vectors in the bulk phase, and the surface extra stress tensor, the surface energy flux vector, and surface mass flux vectors of the interface. The GENERIC formalism also allows us to derive constitutive equations for the transport of mass, momentum, and energy from the bulk phase to the interface. The resulting set of equations is compared to those derived using the rational thermodynamic and classical irreversible thermodynamic formalisms, and is in good agreement with the balance equations derived using these formalisms.
GENERIC 是一种非平衡热力学形式,其中系统的动态行为由一个包含两种括号的单一紧凑方程来描述:泊松括号和耗散括号。这种形式主义已被证明是一种非常强大的工具,可以模拟复杂体相的动态行为。在本文中,我们回顾了 GENERIC 形式主义的基本原理,并展示了如何将其应用于具有显示粘性应力变形行为的界面的多组分多相系统。GENERIC 形式主义向多相系统的推广为模拟例如乳液或泡沫中的复杂界面的非线性动态行为提供了强大的工具。通过向标准的双括号公式添加几个界面贡献,我们推导出系统体相的质量、动量和能量守恒定律。我们还推导出表面质量密度、表面动量和表面能量的跳跃平衡方程。除了这些平衡方程,我们还得到了体相中的额外应力张量、能量通量向量和质量通量向量的本构方程,以及界面的表面额外应力张量、表面能量通量向量和表面质量通量向量。GENERIC 形式主义还允许我们从体相到界面导出质量、动量和能量输运的本构方程。所得方程组与使用合理热力学和经典不可逆热力学形式主义得出的方程组进行了比较,并且与使用这些形式主义得出的平衡方程非常吻合。