Electromagnetic simulation of low-gravity environment has been numerically investigated to study the transport phenomena associated with melting of an electrically conducting Phase Change Material (PCM) inside a rectangular enclosure. Electromagnetic fields are configured in such a way that the resulting Lorentz force can be used to damp and/or counteract the natural convection as well as the flow induced by sedimentation and/or floatation, and thereby simulating the low gravity environment of outer space. The governing equations are discretized using a control-volume-based finite difference scheme. Numerical solutions are obtained for true low-gravity environment as well as for the simulated-low-gravity conditions due to electromagnetic fo...
A methodology is presented to simulate the electromagnetic, heat transfer, and fluid flow phenomena ...
By three-dimensional time-independent numerical calculations a model arrangement of vertical zone me...
A number of different methods have been developed for noncontact electromagnetic treatment of liquid...
The transport phenomenon associated with the melting of an electrically conducting phase change mate...
Transport processes associated with melting of an electrically conducting Phase Change Material (PCM...
Transport phenomena associated with melting of gallium inside a side-heated rectangular enclosure un...
Purpose - To demonstrate, through numerical models, that it is possible to simulated low-gravity pha...
An experimental and numerical study is presented on melting behavior of a pure metal in the presence...
In this paper, numerical and experimental studies are presented on melting behavior of a pure metal ...
An enthalpy method is employed to solve transport processes associated with melting of an unfixed re...
Phase change in a simulated low gravity environment is the central topic of this research work. The ...
An enthalpy method is employed to solve transport processes associated with the effect of density ch...
A 2-D finite element model is presented for the melt growth of single crystals in a microgravity env...
Melting flow and heat transfer of electrically conductive phase change materials subjecting to a non...
Electromagnetic processing of liquid metals involves dynamic change of the fluid volume interfacing ...
A methodology is presented to simulate the electromagnetic, heat transfer, and fluid flow phenomena ...
By three-dimensional time-independent numerical calculations a model arrangement of vertical zone me...
A number of different methods have been developed for noncontact electromagnetic treatment of liquid...
The transport phenomenon associated with the melting of an electrically conducting phase change mate...
Transport processes associated with melting of an electrically conducting Phase Change Material (PCM...
Transport phenomena associated with melting of gallium inside a side-heated rectangular enclosure un...
Purpose - To demonstrate, through numerical models, that it is possible to simulated low-gravity pha...
An experimental and numerical study is presented on melting behavior of a pure metal in the presence...
In this paper, numerical and experimental studies are presented on melting behavior of a pure metal ...
An enthalpy method is employed to solve transport processes associated with melting of an unfixed re...
Phase change in a simulated low gravity environment is the central topic of this research work. The ...
An enthalpy method is employed to solve transport processes associated with the effect of density ch...
A 2-D finite element model is presented for the melt growth of single crystals in a microgravity env...
Melting flow and heat transfer of electrically conductive phase change materials subjecting to a non...
Electromagnetic processing of liquid metals involves dynamic change of the fluid volume interfacing ...
A methodology is presented to simulate the electromagnetic, heat transfer, and fluid flow phenomena ...
By three-dimensional time-independent numerical calculations a model arrangement of vertical zone me...
A number of different methods have been developed for noncontact electromagnetic treatment of liquid...