19th Aerospace Sciences Meeting · 1981 · 18 citations · 1 references
MagnetismElectrical EngineeringEngineeringPhysicsFluid MechanicsAnode WallApplied PhysicsPlasma InstabilityMagnetohydrodynamicsTransport PhenomenaAnode Boundary LayerMagnetic ConfinementThermodynamicsMultiphase FlowMagnetoaerothermal InstabilityFundamental Instability
A fundamental instability in MHD channel flow, hitherto unknown or unappreciated, is described. Lorentz force-driven secondary flow cells preferentially couple core temperature gradient modes into the near fields of the anode wall leading to a locally growing Lorentz force which eventually separates the anode boundary layer. The instability is described with both heuristic order-of-magnitude analyses and detailed three-dimensional, turbulent, MHD flow computations. This magnetoaerothermal instability will be manifested in commercial scale MHD generators of moderate MHD interaction parameter. Methods of control and prevention of the magnetoaerothermal instability exist.
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