arrow
Return

A Eulerian level set/vortex sheet method for two-phase interface dynamics

delete2005-03-01
delete38
PRE
AI
M
Marcus Herrmann
DOI:10.1016/j.jcp.2004.08.023delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
A Eulerian fixed grid approach to simulate the dynamics of two-phase interfaces in the presence of surface tension forces is presented. This level set/vortex sheet method consists of a simplified system of equations that contain individual source terms describing the relevant physical processes at the phase interface explicitly. Hence, this approach provides a framework that will allow for a simplified subsequent modeling of phase interface dynamics in turbulent environments. In the presented level set/vortex sheet method, the location and the motion of the phase interface are captured by a level set equation. Topological changes of the interface, like breakup or merging, are thus handled automatically. Assuming that all vorticity is concentrated at the phase interface, the phase interface itself constitutes a vortex sheet with varying vortex sheet strength. The Eulerian transport equation for the vortex sheet strength is derived by combining its Lagrangian formulation with the level set equation. The resulting differential equation then contains source terms accounting for the stretching of the interface and the influence of surface tension, thus allowing for a detailed study of each effect individually. The results of three test problems, namely the roll-up of a vortex sheet without surface tension, the growth of the Kelvin-Helmholtz instability in the linear regime, and the long-time evolution of the Kelvin-Helmholtz instability are presented. (C) 2004 Elsevier Inc. All rights reserved.
Keywords:
two-phase flow
level set
vortex sheet
Kelvin-Helmholtz instability
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Journal of Computational Physics cover
Journal of Computational Physics
IF:
3.8
Papers:
1.6W
Citations:
7.4W

Organization

No organization information available
Cited Papers

Cited Papers

The Loss of Light Energy in Retina and Choroid
err1960-10-01
err0
PREAI
errW. J. GEERAETS; R. C. WILLIAMS; G. CHAN; W. T. HAM; D. GUERRY; F. H. SCHMIDT
errShare
errSave
What fluids are given during air ambulance treatment of patients with trauma in the UK, and what might this mean for the future? Results from the RESCUER observational cohort study
err2018-01-23
err0
errOAAI
errDavid N Naumann; James M Hancox; James Raitt; Iain M Smith; Nicholas Crombie; Heidi Doughty; Gavin D Perkins; Mark J Midwinter
errShare
errSave
Development and Validation of the University of Washington Clinical Assessment of Music Perception Test
err2009-08-01
err0
errOAAI
errRobert Kang; Grace Liu Nimmons; Ward Drennan; Jeff Longnion; Chad Ruffin; Kaibao Nie; Jong Ho Won; Tina Worman; Bevan Yueh; Jay Rubinstein
errShare
errSave
Review: Potential of water buffalo in world agriculture: Challenges and opportunities
err2019-04-01
err0
errOAAI
errHazem A. El Debaky; Naseer A. Kutchy; Asma Ul-Husna; Rhesti Indriastuti; Shamim Akhter; Bambang Purwantara; Erdogan Memili
errShare
errSave
A PDE-based fast local level set method
err1999-11-01
err1.1K
errOAAI
errPeng, DP; Merriman, B; Osher, S; Zhao, HK; Kang, MJ
errShare
errSave
researcher View more