Numerical modeling of multiphase flows in microfluidics and micro process engineering: a review of methods and applications
M Wörner - Microfluidics and nanofluidics, 2012 - Springer
This article presents a comprehensive review of numerical methods and models for interface
resolving simulations of multiphase flows in microfluidics and micro process engineering …
resolving simulations of multiphase flows in microfluidics and micro process engineering …
Phase-field-based lattice Boltzmann finite-difference model for simulating thermocapillary flows
A phase-field-based hybrid model that combines the lattice Boltzmann method with the finite
difference method is proposed for simulating immiscible thermocapillary flows with variable …
difference method is proposed for simulating immiscible thermocapillary flows with variable …
A novel smoothed particle hydrodynamics formulation for thermo-capillary phase change problems with focus on metal additive manufacturing melt pool modeling
Laser-based metal processing including welding and three dimensional printing, involves
localized melting of solid or granular raw material, surface tension-driven melt flow and …
localized melting of solid or granular raw material, surface tension-driven melt flow and …
A smoothed particle hydrodynamics approach for thermo-capillary flows
Interfacial-driven flows are important phenomena in many processes. In this article, we
present a Smoothed Particle Hydrodynamics (SPH) model for thermo-capillary flow driven …
present a Smoothed Particle Hydrodynamics (SPH) model for thermo-capillary flow driven …
Bouncing drop im**ement on heated hydrophobic surfaces
We extend a diffuse interface phase-field method for two-phase flow simulations so as to
include interfacial heat transfer and the thermal Marangoni effect. The set of governing …
include interfacial heat transfer and the thermal Marangoni effect. The set of governing …
[HTML][HTML] Numerical time-step restrictions as a result of capillary waves
The propagation of capillary waves on material interfaces between two fluids imposes a
strict constraint on the numerical time-step applied to solve the equations governing this …
strict constraint on the numerical time-step applied to solve the equations governing this …
Directional interfacial motion of liquids: Fundamentals, evaluations, and manipulation strategies
The Marangoni effect—often invoked to describe the so-called “tears of wine”—is in essence
the mass transfer along an interface between two fluids due to a gradient of the surface …
the mass transfer along an interface between two fluids due to a gradient of the surface …
Validation of the S‐CLSVOF method with the density‐scaled balanced continuum surface force model in multiphase systems coupled with thermocapillary flows
Three numerical methods, namely, volume of fluid (VOF), simple coupled volume of fluid
with level set (S‐CLSVOF), and S‐CLSVOF with the density‐scaled balanced continuum …
with level set (S‐CLSVOF), and S‐CLSVOF with the density‐scaled balanced continuum …
A conservative level set method on unstructured meshes for modeling multiphase thermo-fluid flow in additive manufacturing processes
Additive manufacturing (AM) is an emerging technology that fuses deposited powder
materials together layer-by-layer using a localized heat source to create an arbitrarily …
materials together layer-by-layer using a localized heat source to create an arbitrarily …
Lattice Boltzmann phase-field modeling of thermocapillary flows in a confined microchannel
To understand how thermocapillary forces manipulate the droplet motion in a confined
microchannel, a lattice Boltzmann phase-field model is developed to simulate immiscible …
microchannel, a lattice Boltzmann phase-field model is developed to simulate immiscible …