A ghost fluid/level set method for boiling flows and liquid evaporation: application to the leidenfrost effect
From MaRDI portal
Publication:2375262
DOI10.1016/j.jcp.2016.04.031zbMath1349.76382OpenAlexW2520216583MaRDI QIDQ2375262
Romain Alis, Sébastien Tanguy, Mathieu Lepilliez, Lucia Rueda Villegas
Publication date: 5 December 2016
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://oatao.univ-toulouse.fr/15781/1/rueda_15781.pdf
Finite volume methods applied to problems in fluid mechanics (76M12) Liquid-gas two-phase flows, bubbly flows (76T10) Finite volume methods for initial value and initial-boundary value problems involving PDEs (65M08)
Related Items
Fluid-structure interaction of thin flexible bodies in multi-material multi-phase systems ⋮ A volume-of-fluid method for interface-resolved simulations of phase-changing two-fluid flows ⋮ An implicit, sharp numerical treatment of viscous terms at arbitrarily shaped liquid-gas interfaces in evaporative flows ⋮ Boiling and evaporation model for liquid-gas flows: a sharp and conservative method based on the geometrical VOF approach ⋮ A semi implicit compressible solver for two-phase flows of real fluids ⋮ An extended model for the direct numerical simulation of droplet evaporation. Influence of the Marangoni convection on leidenfrost droplet ⋮ A computational model for transport of immiscible scalars in two-phase flows ⋮ An interface-resolved phase-change model based on velocity decomposition ⋮ On the coupling between direct numerical simulation of nucleate boiling and a micro-region model at the contact line ⋮ A compressible solver for two phase-flows with phase change for bubble cavitation ⋮ A conservative, interface-resolved, compressible framework for the modeling and simulation of liquid/gas phase change ⋮ A computational framework for interface-resolved DNS of simultaneous atomization, evaporation and combustion ⋮ Alternating direction ghost-fluid methods for solving the heat equation with interfaces ⋮ Accurate and efficient numerical methods for the nonlinear Schrödinger equation with Dirac delta potential ⋮ Ghost-Fluid-Based Sharp Interface Methods for Multi-Material Dynamics: A Review ⋮ Gradient augmented level set method for phase change simulations ⋮ Sharp interface approaches and deep learning techniques for multiphase flows ⋮ A volume of fluid framework for interface-resolved simulations of vaporizing liquid-gas flows ⋮ A finite difference discretization method for heat and mass transfer with Robin boundary conditions on irregular domains ⋮ Fluids-membrane interaction with a full Eulerian approach based on the level set method ⋮ Higher-order accurate diffuse-domain methods for partial differential equations with Dirichlet boundary conditions in complex, evolving geometries ⋮ An efficient, robust and high accuracy framework for direct numerical simulation of 2D and 2D axisymmetric immiscible flow with large property contrast ⋮ Direct numerical simulations of incompressible multiphase magnetohydrodynamics with phase change ⋮ Direct numerical simulation of a bubble motion in a spherical tank under external forces and microgravity conditions ⋮ Imposing mixed Dirichlet-Neumann-Robin boundary conditions on irregular domains in a level set/ghost fluid based finite difference framework ⋮ On two-phase flow solvers in irregular domains with contact line ⋮ xGFM: recovering convergence of fluxes in the ghost fluid method ⋮ Consistency and accuracy in the simulation of two-phase flows with phase change using sharp interface capturing methods ⋮ Effect of phase change on jet atomization: a direct numerical simulation study
Cites Work
- Benchmarks and numerical methods for the simulation of boiling flows
- A fourth order accurate discretization for the Laplace and heat equations on arbitrary domains, with applications to the Stefan problem
- A numerical investigation of the evaporation process of a liquid droplet impinging onto a hot substrate
- 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
- Direct numerical simulation of evaporating droplets
- Evaporation model for interfacial flows based on a continuum-field representation of the source terms
- Robust second-order accurate discretizations of the multi-dimensional Heaviside and Dirac delta functions
- Fast and robust solvers for pressure-correction in bubbly flow problems
- Fronts propagating with curvature-dependent speed: Algorithms based on Hamilton-Jacobi formulations
- Black box multigrid
- 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 partial differential equation approach to multidimensional extrapolation.
- A volume of fluid based method for fluid flows with phase change
- A second-order-accurate symmetric discretization of the Poisson equation on irregular domains
- Efficient implementation of weighted ENO schemes
- High resolution sharp computational methods for elliptic and parabolic problems in complex geometries
- A boundary condition capturing method for Poisson's equation on irregular domains
- On the computation of viscous terms for incompressible two-phase flows with level set/ghost fluid method
- Geometric integration over irregular domains with application to level-set methods
- Efficient symmetric discretization for the Poisson, heat and Stefan-type problems with Robin boundary conditions
- Thermo-Fluid Dynamics of Two-Phase Flow
- Three-dimensional direct numerical simulation for film-boiling contact of moving particle and liquid droplet
- Three-dimensional simulation of impingement of a liquid droplet on a flat surface in the Leidenfrost regime
- Computations of boiling flows
- A front tracking method for computations of boiling in complex geometries
- A boundary condition capturing method for multiphase incompressible flow.
- A hydrodynamic and thermodynamic simulation of droplet impacts on hot surfaces. I: Theoretical model. II: Validation and applications
- A boundary condition capturing method for incompressible flame discontinuities.