Resource

Cartesian cut cell two-fluid solver for hydraulic flow problems

Resource Type
Industry Papers and Articles
Reference Title
Cartesian cut cell two-fluid solver for hydraulic flow problems
Author/Presenter
Qian, L.
Causon, D.M.
Ingram, D.M.
Mingham, C.G.
Organization/Agency
American Society of Civil Engineers
Publisher Name
American Society of Civil Engineers
Year
2003
Date
09/2003
Journal Title
Journal of Hydraulic Engineering
Journal Volume
129
Journal Issue
9
ISBN/ISSN
ISSN: 0733-9429
Abstract/Additional Information

A two-fluid solver which can be applied to a variety of hydraulic flow problems has been developed. The scheme is based on the solution of the incompressible Euler equations for a variable density fluid system using the artificial compressibility method. The computational domain encompasses both water and air regions and the interface between the two fluids is treated as a contact discontinuity in the density field which is captured automatically as part of the solution using a high resolution Godunov-type scheme. A time-accurate solution has been achieved by using an implicit dual-time iteration technique.