Magnetohydrodynamic pressure drops are one of the main issues for liquid metal blanket in fusion reactors. Minimize the fluid velocity at few millimeters per second is one strategy that can be employed to address the problem. For such low velocities, buoyant forces can effectively contribute to drive the flow and therefore must be considered in the blanket design. In order to do so, a CFD code able to represent magneto-convective phenomena is required. This work aims to gauge the capability of ANSYS© CFX-15 to solve such cases. The laminar flow in a differentially heated duct was selected as validation benchmark. A horizontal and uniform magnetic field was imposed over a square duct with a linear and constant temperature gradient perpendicu...
The design of breeding blankets represents the major challenge for fusion reactor engineering becaus...
The present paper aims to establish the MHD module of Anupravaha-1, a general purpose solver for flu...
The attractiveness of liquid metal blankets depends strongly on the degree of which peak pressures a...
Understanding magnetohydrodynamic (MHD) phenomena associated with complex duct geometries and buoyan...
A numerical study on steady laminar magnetohydrodynamics (MHD) mixed convection flow of an electrica...
Magnetohydrodynamic flows of liquid metals in thin conducting ducts of various geometries in the pre...
A detailed understanding of the flow of a liquid metal in a rectangular duct subject to a strong tra...
Computational results were obtained for fully developed free convection MHD flow in a vertical squar...
Magnetoconvection is the type of flows in which the effects of thermal convection and magnetohydrody...
The two questions of main interest for the design of a fusion blanket are whether the heat transfer ...
Buoyancy-driven magneto hydrodynamic flow in a liquid-metal filled cubic enclosure is investigated b...
In order to model liquid-metal flows in self-cooled liquid-lithium blankets for magnetic-confinement...
The buoyancy-driven magnetoconvection in a vertical square duct is investigated numerically using th...
In the Water-Cooled Lithium Lead (WCLL) blanket, a critical problem faced by the design is to ensure...
International audienceA fully three dimensional numerical analysis is performed in order to study tu...
The design of breeding blankets represents the major challenge for fusion reactor engineering becaus...
The present paper aims to establish the MHD module of Anupravaha-1, a general purpose solver for flu...
The attractiveness of liquid metal blankets depends strongly on the degree of which peak pressures a...
Understanding magnetohydrodynamic (MHD) phenomena associated with complex duct geometries and buoyan...
A numerical study on steady laminar magnetohydrodynamics (MHD) mixed convection flow of an electrica...
Magnetohydrodynamic flows of liquid metals in thin conducting ducts of various geometries in the pre...
A detailed understanding of the flow of a liquid metal in a rectangular duct subject to a strong tra...
Computational results were obtained for fully developed free convection MHD flow in a vertical squar...
Magnetoconvection is the type of flows in which the effects of thermal convection and magnetohydrody...
The two questions of main interest for the design of a fusion blanket are whether the heat transfer ...
Buoyancy-driven magneto hydrodynamic flow in a liquid-metal filled cubic enclosure is investigated b...
In order to model liquid-metal flows in self-cooled liquid-lithium blankets for magnetic-confinement...
The buoyancy-driven magnetoconvection in a vertical square duct is investigated numerically using th...
In the Water-Cooled Lithium Lead (WCLL) blanket, a critical problem faced by the design is to ensure...
International audienceA fully three dimensional numerical analysis is performed in order to study tu...
The design of breeding blankets represents the major challenge for fusion reactor engineering becaus...
The present paper aims to establish the MHD module of Anupravaha-1, a general purpose solver for flu...
The attractiveness of liquid metal blankets depends strongly on the degree of which peak pressures a...