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Local Negative Shear and the Formation of Transport Barriers
60
Citations
15
References
1996
Year
EngineeringFluid MechanicsLocal Negative ShearScalar TransportNonlinear EquationsGeophysical FlowBoundary LayerMagnetismTransport BarrierNumerical SimulationLocal Magnetic ShearMagnetohydrodynamicsTransport PhenomenaRheologyVortex DynamicChaotic MixingHydrodynamic StabilityPhysicsShear ZoneApplied Physics
We present a set of 3D nonlinear equations describing drift-resistive ballooning modes in a torus including the self-consistent modification of the local magnetic shear due to the finite $\ensuremath{\beta}$ shift of the flux surfaces. Simulations using these equations reveal that a bifurcation of the transport occurs when the local magnetic shear on the outside midplane reverses sign. A fully self-consistent bifurcation diagram is calculated which reveals significant hysteresis, i.e., the transport barrier is maintained at lower values of $\ensuremath{\beta}$ than is required for the formation of the barrier, as expected from the experimental observations.
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