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Dive into the research topics where David Allan Humphreys is active.

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Featured researches published by David Allan Humphreys.


Physics of Plasmas | 2010

Experiments in DIII-D toward achieving rapid shutdown with runaway electron suppression

E.M. Hollmann; N. Commaux; N.W. Eidietis; T. E. Evans; David Allan Humphreys; A.N. James; T.C. Jernigan; P.B. Parks; E. J. Strait; J.C. Wesley; J.H. Yu; M. E. Austin; L. R. Baylor; N. H. Brooks; V.A. Izzo; G.L. Jackson; M. A. Van Zeeland; W. Wu

Experiments have been performed in the DIII-D tokamak [J. L. Luxon, Nucl. Fusion 42, 614 (2002)] toward understanding runaway electron formation and amplification during rapid discharge shutdown, as well as toward achieving complete collisional suppression of these runaway electrons via massive delivery of impurities. Runaway acceleration and amplification appear to be well explained using the zero-dimensional (0D) current quench toroidal electric field. 0D or even one-dimensional modeling using a Dreicer seed term, however, appears to be too small to explain the initial runaway seed formation. Up to 15% of the line-average electron density required for complete runaway suppression has been achieved in the middle of the current quench using optimized massive gas injection with multiple small gas valves firing simultaneously. The novel rapid shutdown techniques of massive shattered pellet injection and shell pellet injection have been demonstrated for the first time. Experiments using external magnetic perturbations to deconfine runaways have shown promising preliminary results.


Archive | 2010

A Database Investigation of Advanced Tokamak Mode Disruptivity in DIII-D

A.W. Hyatt; David Allan Humphreys; T.C. Luce; Paul L. Taylor


Archive | 2001

Mitigation of Tokamak Disruptions with Control of Runaway Electron Avalanches

D.G. Whyte; Darren S. Gray; E. Hollman; Thomas C Jernigan; David Allan Humphreys; T.E. Evans; W. P. West; C. J. Lasnier


Archive | 2000

Predictive Modeling of Halo Currents in Disruptions and Disruption Mitigation Scenarios

David Allan Humphreys; A. G. Kellman; D.G. Whyte; Shinichi Ishida; G. Kurita


Archive | 1998

Disruption Mitigation by Massive Gas Injection on DIII--D

Thomas C Jernigan; L. R. Baylor; S.K. Combs; S. L. Milora; T.E. Evans; David Allan Humphreys; R. L. Lee; A. G. Kellman; Michael J. Schaffer; Paul L. Taylor; D.G. Whyte


Archive | 1998

Fast Radiometric and Infrared Measurements During Disruptions in DIII--D

Darren S. Gray; S. C. Luckhardt; D.G. Whyte; J. S. Zhang; T.E. Evans; David Allan Humphreys; A.W. Hyatt; A. G. Kellman; R. L. Lee; J. A. Leuer; Michael J. Schaffer; R. T. Snider; Paul L. Taylor; Thomas C Jernigan


Archive | 1998

A Comparison of Divertor Heat Flux Profile Evolution in DIII--D Disruptions Unmitigated and Mitigated by Pre-Disruption Impurity Atom Injection

A.W. Hyatt; R. L. Lee; Paul L. Taylor; T.E. Evans; David Allan Humphreys; A. G. Kellman; John William Cuthbertson; D.G. Whyte; C. J. Lasnier; Thomas C Jernigan


Archive | 1998

Diagnosis and Modeling of Radiation during Massive Helium Gas Injection Disruption Mitigation on DIII-D

D.G. Whyte; Thomas C Jernigan; T.E. Evans; David Allan Humphreys; A. G. Kellman; R. L. Lee; Paul L. Taylor


Archive | 1997

Runaway Electron Diagnostic for Disruptions in DIII--D

Paul L. Taylor; R. L. Lee; T.E. Evans; David Allan Humphreys; A.W. Hyatt; A. G. Kellman; Michael J. Schaffer; Darren S. Gray; S. C. Luckhardt; D.G. Whyte; J. S. Zhang; Thomas C Jernigan


Archive | 1997

Impurity Killer Pellet Plasma Termination and Disruption Mitigation Physics in the DIII--D Tokamak

T.E. Evans; A. G. Kellman; Paul L. Taylor; P.B. Parks; David Allan Humphreys; Michael J. Schaffer; A.W. Hyatt; R. L. Lee; Steve C. Chiu; D.G. Whyte; S. C. Luckhardt; Thomas C Jernigan; L. R. Baylor; Stephen C. Jardin; G. L. Schmidt; Richard William Harvey

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D.G. Whyte

University of Wisconsin-Madison

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R. L. Lee

University College London

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L. R. Baylor

Oak Ridge National Laboratory

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