The numerical prediction of droplet deformation and break‐up using the Godunov marker‐particle projection scheme
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- Type
- article
- Published
- 2008-03-20
- Cited by
- 11
- References
- 12
- OpenAlex
- https://openalex.org/W2128433408
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:122694777
Keywords
Godunov's scheme, Discretization, Projection (relational algebra), Mathematics, Eulerian path
References
- Mathematical modelling of water-droplet impact on hot galvanised steel surfaces
- The Second-Order Projection Method for the Backward-Facing Step Flow
- A High-Order Projection Method for Tracking Fluid Interfaces in Variable Density Incompressible Flows
- Accurate solution algorithms for incompressible multiphase flows
- Two-dimensional Navier-Stokes simulation of deformation and breakup of liquid patches.
- Numerical Analysis of Droplet Breakup Behavior using Particle Method
- A numerical model for multiphase flow based on the GMPPS formulation. Part I: Kinematics
- A continuum method for modeling surface tension
- Numerical and Theoretical Investigation of Effect of Density Ratio on the Critical Weber Number of Droplet Breakup
- A nonreflecting outlet boundary condition for incompressible unsteady Navier-Stokes calculations
- Fundamentals of the hydrodynamic mechanism of splitting in dispersion processes
- Numerical and Theoretical Investigation of Effect of Density Ratio on the Critical Weber Number of Droplet Breakup
Cited by
- A study of droplet deformation
- A numerical study of the effect of viscoelasticity on cavitation and bubble dynamics
- Liquid-state motion sensing
- Deformation behavior of a composite drop in a simple shear flow
- SECONDARY ATOMISATION: SIMULATION OF DROPLET BREAK-UP IN DISTURBED FLOW FIELDS
- MODELLING SPRAY IMPINGEMENT ONTO FLAT, RIGID WALLS USING AN EULERIAN-LAGRANGIAN METHOD
- Bio-Inspired Inertial Sensors for Human Body Motion Measurement
- Bubble collapse near a fluid-fluid interface using the spectral element marker particle method with applications in bioengineering
- Bubble collapse in compressible fluids using a spectral element marker particle method. Part 1. Newtonian fluids
- Graphene Coated Liquid Metal Droplet‐Enabled Dual‐Axis Integrated Accelerometer
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