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Transport by intermittent convection in the boundary of the DIII-D tokamak

Physics of Plasmas · 2001 · Vol. 8(11) · pp. 4826–4833
J.A. BoedoD.L. RudakovR. A. MoyerS. I. KrasheninnikovD.G. WhyteG. R. McKeeGeorge TynanM. J. SchafferP.C. StangebyP. WestS. W. AllenT.E. EvansR. J. FonckE.M. HollmannA.W. LeonardA. MahdaviG. D. PorterM. S. TillackG. Antar

Abstract

Intermittent plasma objects (IPOs) featuring higher pressure than the surrounding plasma, and responsible for ∼50% of the E×BT radial transport, are observed in the scrape off layer (SOL) and edge of the DIII-D tokamak [J. Watkins et al., Rev. Sci. Instrum. 63, 4728 (1992)]. Conditional averaging reveals that the IPOs, produced at a rate of ∼3×103 s−1, are positively charged and also polarized, featuring poloidal electric fields of up to 4000 V/m. The IPOs move poloidally at speeds of up to 5000 m/s and radially with E×BT/B2 velocities of ∼2600 m/s near the last closed flux surface (LCFS), and ∼330 m/s near the wall. The IPOs slow down as they shrink in radial size from 4 cm at the LCFS to 0.5 cm near the wall. The IPOs appear in the SOL of both L and H mode discharges and are responsible for nearly 50% of the SOL radial E×B transport at all radii; however, they are highly reduced in absolute amplitude in H-mode conditions.

Magnetic confinement fusion researchFusion materials and technologiesSuperconducting Materials and ApplicationsDIII-DPhysicsTokamakPlasmaAmplitudeAtomic physicsFlux (metallurgy)ConvectionAtmospheric-pressure plasmaMechanics
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Cited by
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References
On scrape off layer plasma transport
Physics Letters A · 2001 · 499 citations
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