International audienceElectromagnetic levitation of a metallic droplet in the microgravity conditions is modelled accounting for the droplet shape variation, its displacement and turbulent character of the flow in the system. Three different models are applied for description of turbulent flow in the droplet: k − ω SST model and two models based on Reynolds stresses (RSM), all of them resulted in a qualitatively similar flow inside a droplet. Use of RSM-based models leads to a sharper interface of a droplet in volume-of-fluid calculations compared to the k − ω SST model. Two RSM models predict value of the surface tension close to a theoretical one, yet, both fail in predicting of viscosity of the droplet's material
The intense AC magnetic field required to produce levitation in terrestrial conditions, along with t...
The intense AC magnetic field required to produce levitation in terrestrial conditions, along with t...
A high DC magnetic field can be used to levitate liquid droplets in terrestrial conditions, as is kn...
The numerical model for electrically conducting liquid droplets levitated in AC magnetic field is ap...
We present calculations and measurements on the shape of liquid metal droplets in electromagnetic le...
Electromagnetic levitation of liquid metal droplets can be used to measure the properties of highly ...
A mathematical representation was developed for the electromagnetic force field, the flow field, the...
Microgravity provides ideal experimental conditions for studying highly reactive and under-cooled ma...
The purpose is to develop an improved understanding of the electromagnetic, heat, and fluid flow phe...
The numerical model for electrically conducting liquid droplets levitated in AC magnetic field is ex...
Electromagnetic levitation techniques are used in a microgravity environment to allow materials rese...
This work comprises accurate computational analysis of levitated liquid droplet oscillations in AC a...
Electromagnetic levitation of electrically conductive droplets by alternating magnetic fields is a t...
Electromagnetic Levitation (EML) is a valuable method for measuring the thermo-physical properties o...
The electromagnetic levitation facility on board the International Space Station is used to investig...
The intense AC magnetic field required to produce levitation in terrestrial conditions, along with t...
The intense AC magnetic field required to produce levitation in terrestrial conditions, along with t...
A high DC magnetic field can be used to levitate liquid droplets in terrestrial conditions, as is kn...
The numerical model for electrically conducting liquid droplets levitated in AC magnetic field is ap...
We present calculations and measurements on the shape of liquid metal droplets in electromagnetic le...
Electromagnetic levitation of liquid metal droplets can be used to measure the properties of highly ...
A mathematical representation was developed for the electromagnetic force field, the flow field, the...
Microgravity provides ideal experimental conditions for studying highly reactive and under-cooled ma...
The purpose is to develop an improved understanding of the electromagnetic, heat, and fluid flow phe...
The numerical model for electrically conducting liquid droplets levitated in AC magnetic field is ex...
Electromagnetic levitation techniques are used in a microgravity environment to allow materials rese...
This work comprises accurate computational analysis of levitated liquid droplet oscillations in AC a...
Electromagnetic levitation of electrically conductive droplets by alternating magnetic fields is a t...
Electromagnetic Levitation (EML) is a valuable method for measuring the thermo-physical properties o...
The electromagnetic levitation facility on board the International Space Station is used to investig...
The intense AC magnetic field required to produce levitation in terrestrial conditions, along with t...
The intense AC magnetic field required to produce levitation in terrestrial conditions, along with t...
A high DC magnetic field can be used to levitate liquid droplets in terrestrial conditions, as is kn...