Microgravity provides ideal experimental conditions for studying highly reactive and under-cooled materials where there is no contact between the sample and the other experimental apparatus. The non-contact conditions allow material properties to be measured from the oscillating liquid droplet response to perturbations. This work investigates the impact of a strong magnetic field on these measurement processes for weakly viscous, electrically conducting droplets. We present numerical results using an axisymmetric model that employs the pseudo-spectral collocation method and a recently developed 3D model. Both numerical models have been developed to solve the equations describing the coupled electromagnetic and fluid flow processes. The mode...
Advances in superconducting magnet technology have provided the opportunity for the use of high DC m...
The numerical model for electrically conducting liquid droplets levitated in AC magnetic field is ex...
In oscillating drop experiments, surface oscillations in a molten sample are captured and analyzed t...
Numerical models are used to investigate behavior of liquid droplets suspended in high DC magnetic f...
The numerical model for electrically conducting liquid droplets levitated in AC magnetic field is ap...
This work comprises accurate computational analysis of levitated liquid droplet oscillations in AC a...
The values of material physical properties are vital for the successful use of numerical simulations...
Electromagnetic Levitation (EML) is a valuable method for measuring the thermo-physical properties o...
In high intensity and high gradient magnetic fields the volumetric force on diamagnetic material, su...
Electromagnetic levitation of liquid metal droplets can be used to measure the properties of highly ...
The intense AC magnetic field required to produce levitation in terrestrial conditions, along with t...
Electromagnetic levitation of electrically conductive droplets by alternating magnetic fields is a t...
The intense AC magnetic field required to produce levitation in terrestrial conditions, along with t...
The electromagnetic levitation facility on board the International Space Station is used to investig...
This article contains a review of research activity in the University of Greenwich to model the effe...
Advances in superconducting magnet technology have provided the opportunity for the use of high DC m...
The numerical model for electrically conducting liquid droplets levitated in AC magnetic field is ex...
In oscillating drop experiments, surface oscillations in a molten sample are captured and analyzed t...
Numerical models are used to investigate behavior of liquid droplets suspended in high DC magnetic f...
The numerical model for electrically conducting liquid droplets levitated in AC magnetic field is ap...
This work comprises accurate computational analysis of levitated liquid droplet oscillations in AC a...
The values of material physical properties are vital for the successful use of numerical simulations...
Electromagnetic Levitation (EML) is a valuable method for measuring the thermo-physical properties o...
In high intensity and high gradient magnetic fields the volumetric force on diamagnetic material, su...
Electromagnetic levitation of liquid metal droplets can be used to measure the properties of highly ...
The intense AC magnetic field required to produce levitation in terrestrial conditions, along with t...
Electromagnetic levitation of electrically conductive droplets by alternating magnetic fields is a t...
The intense AC magnetic field required to produce levitation in terrestrial conditions, along with t...
The electromagnetic levitation facility on board the International Space Station is used to investig...
This article contains a review of research activity in the University of Greenwich to model the effe...
Advances in superconducting magnet technology have provided the opportunity for the use of high DC m...
The numerical model for electrically conducting liquid droplets levitated in AC magnetic field is ex...
In oscillating drop experiments, surface oscillations in a molten sample are captured and analyzed t...