A three-dimensional cell-based volume-of-fluid method for conservative simulations of primary atomization
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Publication:2157077
DOI10.1016/j.jcp.2022.111374OpenAlexW4282036958MaRDI QIDQ2157077
Temistocle Grenga, Heinz Pitsch, Fabian Fröde, Vincent Le Chenadec, Mathis Bode
Publication date: 21 July 2022
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jcp.2022.111374
Basic methods in fluid mechanics (76Mxx) Multiphase and multicomponent flows (76Txx) Numerical methods for partial differential equations, initial value and time-dependent initial-boundary value problems (65Mxx)
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Cites Work
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- A localized re-initialization equation for the conservative level set method
- A computational framework for conservative, three-dimensional, unsplit, geometric transport with application to the volume-of-fluid (VOF) method
- A monotonicity preserving conservative sharp interface flow solver for high density ratio two-phase flows
- A discontinuous Galerkin conservative level set scheme for interface capturing in multiphase flows
- A mass and momentum conserving unsplit semi-Lagrangian framework for simulating multiphase flows
- Fully multidimensional flux-corrected transport algorithms for fluids
- An accurate adaptive solver for surface-tension-driven interfacial flows
- An accurate conservative level set/ghost fluid method for simulating turbulent atomization
- Conservative volume-of-fluid method for free-surface simulations on Cartesian-grids
- A 3D unsplit-advection volume tracking algorithm with planarity-preserving interface reconstruction
- Efficient implementation of essentially nonoscillatory shock-capturing schemes
- Fronts propagating with curvature-dependent speed: Algorithms based on Hamilton-Jacobi formulations
- Volume of fluid (VOF) method for the dynamics of free boundaries
- A method for capturing sharp fluid interfaces on arbitrary meshes
- A non-oscillatory Eulerian approach to interfaces in multimaterial flows (the ghost fluid method)
- A geometrical area-preserving volume-of-fluid advection method
- Analytical relations connecting linear interfaces and volume fractions in rectangular grids
- A 3-D volume-of-fluid advection method based on cell-vertex velocities for unstructured meshes
- Numerical integration of implicit functions for the initialization of the VOF function
- Second-order accurate volume-of-fluid algorithms for tracking material interfaces
- Unstructured un-split geometrical volume-of-fluid methods - a review
- Three-dimensional cellwise conservative unsplit geometric VOF schemes
- Non-convex analytical and geometrical tools for volume truncation, initialization and conservation enforcement in VOF methods
- An interface reconstruction method based on an analytical formula for 3D arbitrary convex cells
- A conservative level set method for two phase flow. II
- Interface reconstruction with least-squares fit and split advection in three-dimensional Cartesian geometry
- An enhanced un-split face-vertex flux-based VoF method
- A 3D unsplit forward/backward volume-of-fluid approach and coupling to the level set method
- A conservative level set method for two phase flow
- On a Family of Unsplit Advection Algorithms for Volume-of-Fluid Methods
- A new volume of fluid method in three dimensions-Part I: Multidimensional advection method with face-matched flux polyhedra
- Numerical Models of Surface Tension
- Interface reconstruction with least-square fit and split Eulerian-Lagrangian advection
- High-Resolution Conservative Algorithms for Advection in Incompressible Flow
- Modeling Primary Atomization
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