Thermodynamical Modeling of Multiphase Flow System with Surface Tension and Flow

Author:

Koba HajimeORCID

Abstract

We consider the governing equations for the motion of the viscous fluids in two moving domains and an evolving surface from both energetic and thermodynamic points of view. We make mathematical models for multiphase flow with surface flow by our energetic variational and thermodynamic approaches. More precisely, we apply our energy densities, the first law of thermodynamics, and the law of conservation of total energy to derive our multiphase flow system with surface tension and flow. We study the conservative forms and conservation laws of our system by using the surface transport theorem and integration by parts. Moreover, we investigate the enthalpy, the entropy, the Helmholtz free energy, and the Gibbs free energy of our model by applying the thermodynamic identity. The key idea of deriving surface tension and viscosities is to make use of both the first law of thermodynamics and our energy densities.

Funder

Japan Society for the Promotion of Science

Publisher

EDP Sciences

Subject

Modeling and Simulation,Applied Mathematics

Reference30 articles.

1. Angel F.P., The Hamilton-type Principle in Fluid Dynamics. Fundamentals and Applications to Magnetohydrodynamics, Thermodynamics, and Astrophysics. SpringerWienNewYork, Vienna (2006) xxvi+404.

2. Lagrangian Navier–Stokes diffusions on manifolds: Variational principle and stability

3. Kinematics of submanifolds and the mean curvature normal

4. On the Two-Phase Navier–Stokes Equations with Boussinesq–Scriven Surface Fluid

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