On two-phase flow solvers in irregular domains with contact line
DOI10.1016/j.jcp.2016.06.013zbMath1349.76355OpenAlexW2415198578MaRDI QIDQ727037
Sébastien Tanguy, Frédéric Gibou, Elena Roxana Popescu, Mathieu Lepilliez
Publication date: 5 December 2016
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jcp.2016.06.013
level set methodirregular domainssharp interface methodscontact linesghost-fluid methodimplicit viscosity
Navier-Stokes equations for incompressible viscous fluids (76D05) Finite volume methods applied to problems in fluid mechanics (76M12) Three or more component flows (76T30) Finite volume methods for initial value and initial-boundary value problems involving PDEs (65M08)
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- A Lagrangian VOF tensorial penalty method for the DNS of resolved particle-laden flows
- Benchmarks and numerical methods for the simulation of boiling flows
- A stable projection method for the incompressible Navier-Stokes equations on arbitrary geometries and adaptive quad/octrees
- A level set embedded interface method for conjugate heat transfer simulations of low speed 2D flows
- Augmented Lagrangian and penalty methods for the simulation of two-phase flows interacting with moving solids. Application to hydroplaning flows interacting with real tire tread patterns
- Simulations of single and multiple swimmers with non-divergence free deforming geometries
- A Cartesian grid method for solving the two-dimensional streamfunction-vorticity equations in irregular regions
- Three-dimensional numerical simulation of flows with complex geometries in a regular Cartesian grid and its application to blood flow in cerebral artery with multiple aneurysms
- \textit{MRAG-I2D}: multi-resolution adapted grids for remeshed vortex methods on multicore architectures
- A mesh-dependent model for applying dynamic contact angles to VOF simulations
- Prediction of wall-pressure fluctuation in turbulent flows with an immersed boundary method
- A sharp interface method for incompressible two-phase flows
- A level set method for vaporizing two-phase flows
- A level set based sharp interface method for the multiphase incompressible Navier --- Stokes equations with phase change
- An immersed boundary method for complex incompressible flows
- A local directional ghost cell approach for incompressible viscous flow problems with irregular boundaries
- A versatile sharp interface immersed boundary method for incompressible flows with complex boundaries
- The immersed interface method for simulating prescribed motion of rigid objects in an incompressible viscous flow
- An efficient fluid-solid coupling algorithm for single-phase flows
- Fronts propagating with curvature-dependent speed: Algorithms based on Hamilton-Jacobi formulations
- Black box multigrid
- A continuum method for modeling surface tension
- A conservative adaptive projection method for the variable density incompressible Navier-Stokes equations
- 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 ghost-cell immersed boundary method for flow in complex geometry.
- A partial differential equation approach to multidimensional extrapolation.
- A second-order-accurate symmetric discretization of the Poisson equation on irregular domains
- A level-set approach for simulations of flows with multiple moving contact lines with hysteresis
- An overview of the immersed interface method and its applications
- An accurate Cartesian grid method for viscous incompressible flows with complex immersed boundaries
- A boundary condition capturing method for Poisson's equation on irregular domains
- Numerical simulation of static and sliding drop with contact angle hysteresis
- Solving elliptic problems with discontinuities on irregular domains -- the Voronoi interface method
- On the computation of viscous terms for incompressible two-phase flows with level set/ghost fluid method
- A time splitting projection scheme for compressible two-phase flows. application to the interaction of bubbles with ultrasound waves
- A ghost fluid/level set method for boiling flows and liquid evaporation: application to the leidenfrost effect
- An improved weighted essentially non-oscillatory scheme for hyperbolic conservation laws
- An immersed boundary method with direct forcing for the simulation of particulate flows
- An embedded-boundary formulation for large-eddy simulation of turbulent flows interacting with moving boundaries
- An immersed interface method for simulating the interaction of a fluid with moving boundaries
- A numerical method for solving incompressible viscous flow problems
- Flow patterns around heart valves: A numerical method
- Sharp interface Cartesian grid method. I: An easily implemented technique for 3D moving boundary computations
- Sharp interface Cartesian grid method. II: A technique for simulating droplet interactions with surfaces of arbitrary shape
- IMMERSED BOUNDARY METHODS
- Dynamic contact angle of spreading droplets: Experiments and simulations
- Numerical study and physical analysis of the pressure and velocity fields in the near wake of a circular cylinder
- Immersed Interface Methods for Stokes Flow with Elastic Boundaries or Surface Tension
- Dynamics of homogeneous bubbly flows Part 1. Rise velocity and microstructure of the bubbles
- Accelerated flows past a rigid sphere or a spherical bubble. Part 1. Steady straining flow
- Moving Contact Lines: Scales, Regimes, and Dynamical Transitions
- A boundary condition capturing method for multiphase incompressible flow.
- A front-tracking method for the computations of multiphase flow.