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Friday, April 17, 2020 | History

2 edition of Radial transport in the ELMO bumpy torus in collisionless regimes found in the catalog.

Radial transport in the ELMO bumpy torus in collisionless regimes

E. F. Jaeger

Radial transport in the ELMO bumpy torus in collisionless regimes

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  • 26 Currently reading

Published by Dept. of Energy, Oak Ridge National Laboratory, for sale by the National Technical Information Service] in Oak Ridge, Tenn, [Springfield, Va .
Written in English

  • Transport theory.,
  • Collisions (Nuclear physics),
  • Toroidal harmonics.

  • Edition Notes

    StatementE. F. Jaeger, C. L. Hedrick, D. A. Spong.
    SeriesORNL/TM ; 6806, ORNL/TM -- 6806.
    ContributionsHedrick, Clyde Lewis, 1939-, Spong, D. A., Oak Ridge National Laboratory.
    The Physical Object
    Paginationiii, 31 p. :
    Number of Pages31
    ID Numbers
    Open LibraryOL17650105M

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Radial transport in the ELMO bumpy torus in collisionless regimes by E. F. Jaeger Download PDF EPUB FB2

Get this from a library. Radial transport in the ELMO bumpy torus in collisionless regimes. [E F Jaeger; Clyde Lewis Hedrick; D A Spong; Oak Ridge National Laboratory.].

Modeling the ELMO Bumpy Torus as a bumpy cylinder with toroidally induced vertical drift, neoclassical transport Radial transport in the ELMO bumpy torus in collisionless regimes book are obtained for resonant.

The calculation in this paper clarifies the ordering of transport regimes in Elmo Bumpy Torus (EBT), identified as one collisional and two collisionless regimes, plateau and banana. Using recently derived analytic expressions for resonant and nonresonant neoclassical transport coefficients in EBT, we calculate the ambipolar potential required to maintain quasi-charge neutrality in the presence of a high-energy Radial transport in the ELMO bumpy torus in collisionless regimes book tail produced.

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Format: Paperback. He is known for his Radial transport in the ELMO bumpy torus in collisionless regimes book in Transport phenomena of Non-Newtonian fluids, including fluid dynamics of polymers, polymer kinetic theory, and rheology.

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