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ItemA Supplemental Fusion-Fission Hybrid Path to Fusion Power Development(Georgia Institute of Technology, 2012-07-21) Stacey, Weston M.
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ItemSustainable Nuclear Power(Georgia Institute of Technology, 2012-03-15) Stacey, Weston M.
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ItemSuggested DIII-D Research Focus on Pedestal/Boundary Physics(Georgia Institute of Technology, 2012-01-26) Stacey, Weston M.
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ItemNon-Diffusive Transport in the Tokamak Edge Pedestal(Georgia Institute of Technology, 2012) Stacey, Weston M. ; Groebner, Rich J. ; Evans, T. E.There are (at least) two classical mechanisms for non-diffusive transport in the edge plasma: i) particle “pinch” velocities due to forces such as VxB, and Er; and ii) outward drifts due to ion-orbit loss and X-transport. A theoretical development for the treatment of these non-diffusive transport mechanisms within the context of fluid theory is assembled and applied to several DIII-D discharges in order to investigate the importance of these non-diffusive transport mechanisms in the edge pedestal. Several interesting insights emerge from this investigation.