Publication | Closed Access
Observations of Improved Stability and Confinement in a High-<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mi>β</mml:mi></mml:math>Self-Organized Spherical-Torus-Like Field-Reversed Configuration
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Citations
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References
2005
Year
EngineeringImproved StabilityFluid MechanicsPlasma SciencePlasma PhysicsSelf-organized Field-reversed ConfigurationMagnetic Confinement FusionMagnetismMath XmlnsFlux Confinement TimesMagnetohydrodynamicsDriven Interchange ModesUnified Field TheoryPhysicsQuantum Field TheoryApplied Plasma PhysicMagnetic ConfinementApplied PhysicsCondensed Matter Physics
An extremely high-beta (over 85%) self-organized field-reversed configuration (FRC) with a spherical-torus- (ST-)like core is produced in the translation, confinement, and sustainment experiment by highly super-Alfvénic translation of a spheromaklike plasmoid. Substantial flux conversion from toroidal into poloidal occurs during the capture process, resulting in the ST-like core. This plasma state exhibits a remarkable stabilizing property for the ubiquitous centrifugally driven interchange modes present in theta-pinch formed FRCs. This is explained, for the first time, by a simple model taking into account magnetic shear and centrifugal effects. The FRC-ST configuration has up to 4 times improvement in flux confinement times over the scaling of conventional theta-pinch formed FRCs and, thus, a significant improvement in the resistivity and transport.
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