A point-mass particle method for the simulation of immiscible multiphase flows on an Eulerian grid
DOI10.1016/j.jcp.2019.07.034zbMath1453.76171OpenAlexW2964241773WikidataQ127489852 ScholiaQ127489852MaRDI QIDQ2222504
Publication date: 27 January 2021
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jcp.2019.07.034
multiphase flowmultiphase flow simulationcoupled Eulerian-Lagrangian phase trackinginterfacial flow simulationpoint mass particles
Particle methods and lattice-gas methods (76M28) Liquid-gas two-phase flows, bubbly flows (76T10) Probabilistic methods, particle methods, etc. for initial value and initial-boundary value problems involving PDEs (65M75) Liquid-liquid two component flows (76T06)
Uses Software
Cites Work
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- A computational framework for conservative, three-dimensional, unsplit, geometric transport with application to the volume-of-fluid (VOF) method
- A new incompressibility discretization for a hybrid particle MAC grid representation with surface tension
- An optimal constrained approach for divergence-free velocity interpolation and multilevel VOF method
- Enhancement of performance and stability of MPS mesh-free particle method for multiphase flows characterized by high density ratios
- Incompressible smoothed particle hydrodynamics for free-surface flows: A generalised diffusion-based algorithm for stability and validations for impulsive flows and propagating waves
- A new particle method for simulating breakup of liquid jets
- Semi-implicit surface tension formulation with a Lagrangian surface mesh on an Eulerian simulation grid
- Smoothed particle hydrodynamics and magnetohydrodynamics
- A volume of fluid method based on multidimensional advection and spline interface reconstruction
- A mass and momentum conserving unsplit semi-Lagrangian framework for simulating multiphase flows
- Comparative study on accuracy and conservation properties of two particle regularization schemes and proposal of an optimized particle shifting scheme in ISPH context
- A hybrid particle-mesh method for viscous, incompressible, multiphase flows
- Accuracy and stability in incompressible SPH (ISPH) based on the projection method and a new approach
- An accurate conservative level set/ghost fluid method for simulating turbulent atomization
- Front tracking with moving-least-squares surfaces
- Conservative volume-of-fluid method for free-surface simulations on Cartesian-grids
- Smoothed particle hydrodynamics (SPH): an overview and recent developments
- A spectrally refined interface approach for simulating multiphase flows
- A front-tracking/ghost-fluid method for fluid interfaces in compressible flows
- The ringing instability in particle-in-cell calculations of low-speed flow
- Fronts propagating with curvature-dependent speed: Algorithms based on Hamilton-Jacobi formulations
- Volume of fluid (VOF) method for the dynamics of free boundaries
- A front-tracking method for viscous, incompressible multi-fluid flows
- A non-oscillatory Eulerian approach to interfaces in multimaterial flows (the ghost fluid method)
- A level set approach for computing solutions to incompressible two-phase flow
- A coupled level set and volume-of-fluid method for computing 3D and axisymmetric incompressible two-phase flows
- A projection-based particle method with optimized particle shifting for multiphase flows with large density ratios and discontinuous density fields
- Importance of curvature evaluation scale for predictive simulations of dynamic gas-liquid interfaces
- A hybrid particle level set method for improved interface capturing
- PROST: a parabolic reconstruction of surface tension for the volume-of-fluid method.
- A short note on Dynamic Stabilization of Moving Particle Semi-implicit method
- Pairwise force smoothed particle hydrodynamics model for multiphase flow: surface tension and contact line dynamics
- Coupling of smoothed particle hydrodynamics with finite volume method for free-surface flows
- A conservative level set method for two phase flow. II
- A balanced force refined level set grid method for two-phase flows on unstructured flow solver grids
- A conservative level set method for two phase flow
- A Lagrangian particle level set method
- A Semi-Lagrangian Particle Level Set Finite Element Method for Interface Problems
- A high-order accurate particle-in-cell method
- Numerical Calculation of Time-Dependent Viscous Incompressible Flow of Fluid with Free Surface
- A new volume of fluid method in three dimensions-Part I: Multidimensional advection method with face-matched flux polyhedra
- Numerical simulation of breakup of a viscous drop in simple shear flow through a volume-of-fluid method
- Large-scale SPH simulations of droplet impact onto a liquid surface up to the consequent formation of Worthington jet
- Particle methods
- High-Resolution Conservative Algorithms for Advection in Incompressible Flow
- A simple SPH algorithm for multi‐fluid flow with high density ratios
- A hybrid Lagrangian–Eulerian particle‐level set method for numerical simulations of two‐fluid turbulent flows
- Modeling Primary Atomization
- The point-set method: Front-tracking without connectivity
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