Energetic variational approaches for multiphase flow systems with phase transition

Fuente: arXiv
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Main Author: Koba, Hajime
Format: Preprint
Published: 2022
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author Koba, Hajime
author_facet Koba, Hajime
contents We study the governing equations for the motion of the fluid particles near air-water interface from an energetic point of view. Since evaporation and condensation phenomena occur at the interface, we have to consider phase transition. This paper applies an energetic variational approach to derive multiphase flow systems with phase transition, where a multiphase flow means compressible and incompressible two-phase flow. We also research the conservation and energy laws of our system. The key ideas of deriving our systems are to acknowledge the existence of the interface and to apply an energetic variational approach. More precisely, we assume that both the coefficient of surface tension and the density of the interface are constants, and we apply an energetic variational approach to look for the dominant equations for the densities of our multiphase flow systems with phase transition. As applications, we can derive the usual Euler and Navier-Stokes systems, or a two-phase flow system with surface tension by our methods.
format Preprint
id arxiv_https___arxiv_org_abs_2210_16501
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Energetic variational approaches for multiphase flow systems with phase transition
Koba, Hajime
Mathematical Physics
70-10, 76-10, 76T10, 35A15
We study the governing equations for the motion of the fluid particles near air-water interface from an energetic point of view. Since evaporation and condensation phenomena occur at the interface, we have to consider phase transition. This paper applies an energetic variational approach to derive multiphase flow systems with phase transition, where a multiphase flow means compressible and incompressible two-phase flow. We also research the conservation and energy laws of our system. The key ideas of deriving our systems are to acknowledge the existence of the interface and to apply an energetic variational approach. More precisely, we assume that both the coefficient of surface tension and the density of the interface are constants, and we apply an energetic variational approach to look for the dominant equations for the densities of our multiphase flow systems with phase transition. As applications, we can derive the usual Euler and Navier-Stokes systems, or a two-phase flow system with surface tension by our methods.
title Energetic variational approaches for multiphase flow systems with phase transition
topic Mathematical Physics
70-10, 76-10, 76T10, 35A15
url https://arxiv.org/abs/2210.16501