Evaporation boundary conditions for the R13 equations of rarefied gas dynamics

No Thumbnail Available

Date

2017-09

Journal Title

Journal ISSN

Volume Title

Publisher

AIP

Abstract

The regularized 13 moment (R13) equations are a macroscopic model for the description of rarefied gas flows in the transition regime. The equations have been shown to give meaningful results for Knudsen numbers up to about 0.5. Here, their range of applicability is extended by deriving and testing boundary conditions for evaporating and condensing interfaces. The macroscopic interface conditions are derived from the microscopic interface conditions of kinetic theory. Tests include evaporation into a half-space and evaporation/condensation of a vapor between two liquid surfaces of different temperatures. Comparison indicates that overall the R13 equations agree better with microscopic solutions than classical hydrodynamics.

Description

Keywords

Mathematics, R13 equations, Evaporation boundary, Gas dynamics

Citation

Endorsement

Review

Supplemented By

Referenced By