
DF_MULTI _SAP© is an advanced multi-bubble dynamics code suitable to track a distribution of nuclei in a CFD computed or experimental measured flow field. DF_MULTI _SAP© uses a spherical bubble dynamics model which incorporates knowledge acquired from studying bubble dynamics in complex vortical flow fields using the axisymmetric 2DYNAFS© CFD code or the three-dimensional 3DYNAFS© code. DF_MULTI _SAP© is suitable for studying tip vortex and traveling bubble cavitation inception and bubbly flows involving bubble entrainment. DF_MULTI _SAP© uses a Surface-Averaged Pressure (SAP) scheme to improve the classical spherical bubble dynamics model which is based on the Rayleigh-Plesset equation. In addition, a pressure term acting on bubble surface due to slip velocity between the liquid and the bubble is also taken into account. To include the energy losses due to acoustic emission during the bubble dynamics an option allows solution of Gilmore's equation to replace the Rayleigh-Plesset equation. Several advanced features such as inclusion of gas diffusion and bubble splitting following its elongation are also available in DF_MULTI _SAP©. 
DF_MULTI _SAP© is a Lagrange-based scheme which tracks bubble nuclei along their trajectories and record acoustic signals generated by the bubbles' volume oscillations. DF_MULTI _SAP© is capable of simulating multiple bubble dynamics for a given nuclei size distribution in the liquid. DF_MULTI _SAP© can work as standalone software with the flow field provided by the user and can also work as a module coupled with a liquid phase flow solver. An coupled two-phase flow model can be achieved by coupling DF_MULTI _SAP© with an flow solver.
DF_MULTI _SAP© is very flexible such that it can be easily coupled with Navier-Stokes solvers based on different numerical schemes including finite difference, finite volume, and finite element methods. It can be incorporated with different flow solvers grid systems including structured grids, unstructured grids, and Chimera overset grids. DF_MULTI _SAP© has been successfully coupled with Navier-Stokes codes UNCLE(1), and coupling with other CFD codes for Navy users such as CFDIOWA-SHIP(2) and Ins3D(3) is underway. It has been coupled to the commercial code Fluent. An add-on package of DF_MULTI _SAP© in Fluent is available as Discrete Bubble Model (DBM).
(1) Developed by Mississippi State University
(2) Developed by the University of Iowa
(3) Developed by NASA Ames
References:
For more information, please contact us.

Research & Development in Applied Sciences
DYNAFLOW, INC.
Overview |
Products |
| Services |
| External Links |
| Patent & TM |
Copyright ©1997-2008. DYNAFLOW, INC. All rights reserved. Terms of Use Last Updated: 5/08/2008 |