JOURNAL ARTICLE

Confinement Scaling Laws for the Conventional Reversed-Field Pinch

Jan ScheffelD. D. Schnack

Year: 2000 Journal:   Physical Review Letters Vol: 85 (2)Pages: 322-325   Publisher: American Physical Society

Abstract

A series of high resolution, 3D, resistive MHD numerical simulations of the reversed-field pinch are performed to obtain scaling laws for poloidal beta and energy confinement at Lundquist numbers approaching 10(6). Optimum plasma conditions are attained by taking the transport coefficients to be classical, and ignoring radiation losses and resistive wall effects. We find that poloidal beta scales as beta(straight theta) approximately I-0.40 and that the energy confinement time scales as tau(E) approximately I0.34 for fixed I/N, with aspect ratio R/a = 1.25.

Keywords:
Physics BETA (programming language) Resistive touchscreen Magnetohydrodynamics Pinch Reversed field pinch Scaling Scaling law Plasma Z-pinch Series (stratigraphy) Mechanics Energy (signal processing) Electron Magnetic field Computational physics Quantum electrodynamics Atomic physics Nuclear physics Quantum mechanics Geometry

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0.82
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17
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0.88
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Citation History

Topics

Magnetic confinement fusion research
Physical Sciences →  Physics and Astronomy →  Nuclear and High Energy Physics
Ionosphere and magnetosphere dynamics
Physical Sciences →  Physics and Astronomy →  Astronomy and Astrophysics
Particle accelerators and beam dynamics
Physical Sciences →  Engineering →  Aerospace Engineering

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