Nuclear Fusion · 2016 · 29 citations · 27 references
EngineeringPlasma SciencePlasma PhysicsMagnetic Confinement FusionPlasma SimulationPlasma TheoryMagnetohydrodynamicsPlasma ConfinementElectrical EngineeringPhysicsApplied Plasma PhysicMagnetic ConfinementRobust EchMagnetic Confinement Fusion PhysicsLoop VoltageAerospace EngineeringTrapped Particle ConfigurationPlasma ApplicationSpherical Tori
Abstract An efficient and robust ECH (electron cyclotron heating)-assisted plasma start-up scheme with a low loop voltage and low volt-second consumption utilizing the trapped particle configuration (TPC) has been developed in the versatile experiment spherical torus (VEST). The TPC is a mirror-like magnetic field configuration providing a vertical magnetic field in the same direction as the equilibrium field. It significantly enhances ECH pre-ionization with enhanced particle confinement due to its mirror effect, and intrinsically provides an equilibrium field with a stable decay index enabling prompt plasma current initiation. Consequently, the formation of TPC before the onset of the loop voltage allows the plasma to start up with a lower loop voltage and lower volt-second consumption as well as a wider operation range in terms of ECH pre-ionization power and H 2 filling pressure. The TPC can improve the widely-used field null configuration significantly for more efficient start-up when ECH pre-ionization is used. This can then be utilized in superconducting tokamaks requiring a low loop voltage start-up, such as ITER, or in spherical tori with limited volt-seconds. The TPC can be particularly useful in superconducting tokamaks with a limited current slew-rate of superconducting PF coils, as it can save volt-second consumption before plasma current initiation by providing prompt initiation with an intrinsic stable equilibrium field.
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Low voltage Ohmic and electron cyclotron heating assisted startup in DIII-D
B. Lloyd, G.L. Jackson, T. S. Taylor et al. · Nuclear Fusion · 1991 · 218 citations
Low Voltage Ohmic, Low Voltage Startup, Electrical Engineering +15
Investigation of the formation of a fully pressure-driven tokamak*
C. B. Forest, Y. S. Hwang, M. Ono et al. · Physics of Plasmas · 1994 · 83 citations
Magnetic Confinement Fusion Physics, Engineering, Physics +15