Search Results - "Haakonsen, C. B."

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  1. 1

    ARC: A compact, high-field, fusion nuclear science facility and demonstration power plant with demountable magnets by Sorbom, B.N., Ball, J., Palmer, T.R., Mangiarotti, F.J., Sierchio, J.M., Bonoli, P., Kasten, C., Sutherland, D.A., Barnard, H.S., Haakonsen, C.B., Goh, J., Sung, C., Whyte, D.G.

    Published in Fusion engineering and design (01-11-2015)
    “…[Display omitted] •ARC reactor designed to have 500MW fusion power at 3.3m major radius.•Compact, simplified design allowed by high magnetic fields and jointed…”
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    Journal Article
  2. 2

    An initial study of demountable high-temperature superconducting toroidal field magnets for the Vulcan tokamak conceptual design by Hartwig, Z.S., Haakonsen, C.B., Mumgaard, R.T., Bromberg, L.

    Published in Fusion engineering and design (01-03-2012)
    “…Recent developments have made it possible to consider high-temperature superconductor (HTS) for the design of tokamak toroidal field (TF) magnet systems,…”
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    Journal Article
  3. 3

    Vulcan: A steady-state tokamak for reactor-relevant plasma–material interaction science by Olynyk, G.M., Hartwig, Z.S., Whyte, D.G., Barnard, H.S., Bonoli, P.T., Bromberg, L., Garrett, M.L., Haakonsen, C.B., Mumgaard, R.T., Podpaly, Y.A.

    Published in Fusion engineering and design (01-03-2012)
    “…► A new scaling for obtaining reactor similarity in the divertor of scaled tokamaks. ► Conceptual design for a tokamak (“Vulcan”) to implement this new…”
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    Journal Article
  4. 4

    Reactor similarity for plasma–material interactions in scaled-down tokamaks as the basis for the Vulcan conceptual design by Whyte, D.G., Olynyk, G.M., Barnard, H.S., Bonoli, P.T., Bromberg, L., Garrett, M.L., Haakonsen, C.B., Hartwig, Z.S., Mumgaard, R.T., Podpaly, Y.A.

    Published in Fusion engineering and design (01-03-2012)
    “…► Discussion of similarity scalings for reduced-size tokamaks. ► Proposal of a new set of scaling laws for divertor similarity. ► Discussion of how the new…”
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    Journal Article
  5. 5

    The engineering design of ARC: A compact, highfield, fusion nuclear science facility and demonstration power plant by Sorbom, B. N., Ball, J., Palmer, T. R., Mangiarotti, F. J., Sierchio, J. M., Bonoli, P., Kasten, C., Sutherland, D. A., Barnard, H. S., Haakonsen, C. B., Goh, J., Sung, C., Whyte, D. G.

    “…The affordable, robust, compact (ARC) reactor conceptual design study aims to reduce the size, cost, and complexity of a combined fusion nuclear science…”
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    Conference Proceeding
  6. 6

    Non-linear Plasma Wake Growth of Electron Holes by Hutchinson, I. H, Haakonsen, C. B, Zhou, C

    Published 12-01-2015
    “…Phys. Plasmas 22, 032312 (2015) An object's wake in a plasma with small Debye length that drifts \emph{across} the magnetic field is subject to electrostatic…”
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    Journal Article
  7. 7

    Collisional Effects on Nonlinear Ion Drag Force for Small Grains by Hutchinson, I. H, Haakonsen, C. B

    Published 17-10-2013
    “…Physics of Plasmas, vol 10, 083701 (2013) The ion drag force arising from plasma flow past an embedded spherical grain is calculated self-consistently and…”
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    Journal Article
  8. 8

    ARC: A compact, high-field, fusion nuclear science facility and demonstration power plant with demountable magnets by Sorbom, B. N, Ball, J, Palmer, T. R, Mangiarotti, F. J, Sierchio, J. M, Bonoli, P, Kasten, C, Sutherland, D. A, Barnard, H. S, Haakonsen, C. B, Goh, J, Sung, C, Whyte, D. G

    Published 16-08-2015
    “…The affordable, robust, compact (ARC) reactor conceptual design study aims to reduce the size, cost, and complexity of a combined fusion nuclear science…”
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    Journal Article
  9. 9

    ARC: A compact, high-field, fusion nuclear science facility and demonstration power plant with demountable magnets by Sorbom, B. N., Ball, J., Palmer, T. R., Mangiarotti, F. J., Sierchio, J. M., Bonoli, P., Kasten, C., Sutherland, D. A., Barnard, H. S., Haakonsen, C. B., Goh, J., Sung, C., Whyte, D. G.

    Published in Fusion engineering and design (14-07-2015)
    “…The affordable, robust, compact (ARC) reactor is the product of a conceptual design study focused on reducing the size, cost, and complexity of a combined…”
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    Journal Article