A Level Set-Based Solver for Two-Phase Incompressible Flows: Extension to Magnetic Fluids
From MaRDI portal
Publication:6558589
DOI10.1080/10618562.2024.2334073zbMATH Open1545.76091MaRDI QIDQ6558589
Andrew J. Higgins, Alireza Najafi-Yazdi, Paria Makaremi-Esfarjani
Publication date: 19 June 2024
Published in: International Journal of Computational Fluid Dynamics (Search for Journal in Brave)
Finite difference methods applied to problems in fluid mechanics (76M20) Magnetohydrodynamics and electrohydrodynamics (76W05) Liquid-gas two-phase flows, bubbly flows (76T10) Stability and instability of magnetohydrodynamic and electrohydrodynamic flows (76E25) Basic methods in fluid mechanics (76M99)
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- High-fidelity interface tracking in compressible flows: unlimited anchored adaptive level set
- High order conservative finite difference scheme for variable density low Mach number turbulent flows
- An accurate conservative level set/ghost fluid method for simulating turbulent atomization
- A spectrally refined interface approach for simulating multiphase flows
- Application of a fractional-step method to incompressible Navier-Stokes equations
- A continuum method for modeling surface tension
- A front-tracking method for viscous, incompressible multi-fluid flows
- Fully conservative higher order finite difference schemes for incompressible flow
- A high-order WENO finite difference scheme for the equations of ideal magnetohydrodynamics
- A non-oscillatory Eulerian approach to interfaces in multimaterial flows (the ghost fluid method)
- Motion and deformation of liquid drops, and the rheology of dilute emulsions in simple shear flow
- A level set approach for computing solutions to incompressible two-phase flow
- Weighted essentially non-oscillatory schemes
- A numerical method for solving incompressible viscous flow problems. Reprint
- A coupled level set and volume-of-fluid method for computing 3D and axisymmetric incompressible two-phase flows
- A review of level-set methods and some recent applications
- A hybrid particle level set method for improved interface capturing
- Efficient implementation of weighted ENO schemes
- An improved consistent, conservative, non-oscillatory and high order finite difference scheme for variable density low Mach number turbulent flow simulation
- Consistency and accuracy in the simulation of two-phase flows with phase change using sharp interface capturing methods
- Characteristic boundary conditions for magnetohydrodynamic equations
- A diffuse interface model and semi-implicit energy stable finite element method for two-phase magnetohydrodynamic flows
- A mixed upwind/central WENO scheme for incompressible two-phase flows
- Consistent, essentially conservative and balanced-force phase-field method to model incompressible two-phase flows
- A conservative level set method for two phase flow. II
- Diffuse interface model for incompressible two-phase flows with large density ratios
- A balanced force refined level set grid method for two-phase flows on unstructured flow solver grids
- Numerical simulation of two-phase flows in the presence of a magnetic field
- A conservative level set method for two phase flow
- A magnetic field coupling lattice Boltzmann model and its application on the merging process of multiple-ferrofluid-droplet system
- An introduction to magnetohydrodynamics
- Deformation of a hydrophobic ferrofluid droplet suspended in a viscous medium under uniform magnetic fields
- Direct Numerical Simulations of Gas–Liquid Multiphase Flows
- Field-induced motion of ferrofluid droplets through immiscible viscous media
- Motion of two superposed viscous fluids
- The viscosity of a fluid containing small drops of another fluid
- Total variation diminishing Runge-Kutta schemes
- Numerical Models of Surface Tension
- Multiphase SPH Modelling of Supercooled Large Droplets Freezing on Aircraft Surfaces
- A high order WENO finite difference scheme for incompressible fluids and magnetohydrodynamics
- Deformation of a Sheared Magnetic Droplet in a Viscous Fluid
- Rayleigh-Taylor Instabilities of a Collapsing Cylindrical Shell in a Magnetic Field
- Finite Difference and Reinitialization Methods with Level Set to Interfacial Area Transport Equations for Gas–Liquid Two-Phase Flows
- A projection FEM for variable-density incompressible flows
- A Lattice Boltzmann Front-Tracking Interface Capturing Method based on Neural Network for Gas-Liquid Two-Phase Flow
This page was built for publication: A Level Set-Based Solver for Two-Phase Incompressible Flows: Extension to Magnetic Fluids