MFC: an open-source high-order multi-component, multi-phase, and multi-scale compressible flow solver
DOI10.1016/j.cpc.2020.107396zbMath1516.76053arXiv1907.10512WikidataQ115045157 ScholiaQ115045157MaRDI QIDQ6156523
Jomela C. Meng, Vedran Coralic, Tim Colonius, Spencer H. Bryngelson, Kazuki Maeda, Kevin Schmidmayer
Publication date: 13 June 2023
Published in: Computer Physics Communications (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1907.10512
ensemble averagingRunge-Kutta time marching schemeshock-droplet interactionfinite volume spatial discretizationdiffuse-interface method
Shock waves and blast waves in fluid mechanics (76L05) Finite difference methods applied to problems in fluid mechanics (76M20) Finite volume methods applied to problems in fluid mechanics (76M12) Liquid-gas two-phase flows, bubbly flows (76T10)
Related Items
Cites Work
- Unnamed Item
- Adaptive multi-resolution method for compressible multi-phase flows with sharp interface model and pyramid data structure
- High-order conservative reconstruction schemes for finite volume methods in cylindrical and spherical coordinates
- Direct numerical simulation of interfacial instabilities: A consistent, conservative, all-speed, sharp-interface method
- Anti-diffusion interface sharpening technique for two-phase compressible flow simulations
- High order finite volume methods on wavelet-adapted grids with local time-stepping on multicore architectures for the simulation of shock-bubble interactions
- Finite-volume WENO schemes for three-dimensional conservation laws
- A conservative interface method for compressible flows
- Implementation of WENO schemes in compressible multicomponent flow problems
- Simple and efficient relaxation methods for interfaces separating compressible fluids, cavitating flows and shocks in multiphase mixtures
- A front-tracking/ghost-fluid method for fluid interfaces in compressible flows
- A non-oscillatory Eulerian approach to interfaces in multimaterial flows (the ghost fluid method)
- Restoration of the contact surface in the HLL-Riemann solver
- A Riemann problem based method for the resolution of compressible multimaterial flows
- Ghost fluid method for strong shock impacting on material interface.
- Monotonicity preserving weighted essentially non-oscillatory schemes with increasingly high order of accuracy
- Shock-induced collapse of a cylindrical air cavity in water: A free-Lagrange simulation
- Some models and Eulerian methods for interface problems between compressible fluids with heat transfer
- Shock-induced collapse of a bubble inside a deformable vessel
- A model and numerical method for compressible flows with capillary effects
- Mapped weighted essentially non-oscillatory schemes: Achieving optimal order near critical points
- Treatment of interface problems with Godunov-type schemes
- A five-equation model for the simulation of interfaces between compressible fluids
- An interface interaction method for compressible multifluids
- How to prevent pressure oscillations in multicomponent flow calculations: A quasi conservative approach
- Efficient implementation of weighted ENO schemes
- A fluid-mixture type algorithm for compressible multicomponent flow with van der Waals equation of state
- Numerical treatment of polar coordinate singularities
- A source term approach for generation of one-way acoustic waves in the Euler and Navier-Stokes equations
- An assessment of multicomponent flow models and interface capturing schemes for spherical bubble dynamics
- An all-Mach method for the simulation of bubble dynamics problems in the presence of surface tension
- Pressure-based algorithm for compressible interfacial flows with acoustically-conservative interface discretisation
- A conservative interface-interaction method for compressible multi-material flows
- Eulerian-Lagrangian method for simulation of cloud cavitation
- A compressible flow model with capillary effects
- Modelling bubble clusters in compressible liquids
- Fragmentation of waterdrops in the zone behind an air shock
- Modelling phase transition in metastable liquids: application to cavitating and flashing flows
- Two-phase modeling of deflagration-to-detonation transition in granular materials: Reduced equations
- Riemann Solvers and Numerical Methods for Fluid Dynamics
- Small-scale structure of the Taylor–Green vortex
- Bubble oscillations of large amplitude
- On the dynamics of a shock–bubble interaction
- Total variation diminishing Runge-Kutta schemes
- Conservative Front Tracking with Improved Accuracy
- A Conservative Modification to the Ghost Fluid Method for Compressible Multiphase Flows
- Ensemble phase-averaged equations for bubbly flows
- Numerical simulation of the aerobreakup of a water droplet
- A reduced-order model of diffusive effects on the dynamics of bubbles
- Statistical equilibrium of bubble oscillations in dilute bubbly flows
- Cavitation and Bubble Dynamics
- The Riemann problem for fluid flow of real materials
- Breakup of a liquid drop suddenly exposed to a high-speed airstream
- Computations of compressible multifluids.
- Numerical simulation of shock wave interaction with a water column
- Preventing numerical errors generated by interface-capturing schemes in compressible multi-material flows
This page was built for publication: MFC: an open-source high-order multi-component, multi-phase, and multi-scale compressible flow solver