Peter C. Stangeby
Affiliations: | Aerospace Science and Engineering | University of Toronto, Toronto, ON, Canada |
Area:
General Engineering, Fluid and Plasma PhysicsGoogle:
"Peter Stangeby"
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Publications
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Wang HQ, Guo HY, Xu GS, et al. (2020) First Evidence of Local E×B Drift in the Divertor Influencing the Structure and Stability of Confined Plasma near the Edge of Fusion Devices. Physical Review Letters. 124: 195002 |
Stangeby PC, Moulton D. (2020) A simple analytic model of impurity leakage from the divertor and accumulation in the main scrape-off layer Nuclear Fusion. 60: 106005 |
Unterberg E, Abrams T, Bykov I, et al. (2019) Localized divertor leakage measurements using isotopic tungsten sources during edge-localized mode-y H-mode discharges on DIII-D Nuclear Fusion. 60: 016028 |
Xu G, Guterl J, Abrams T, et al. (2019) Modeling of inter- and intra-edge-localized mode tungsten erosion during DIII-D H-mode discharges Nuclear Fusion. 59: 126018 |
Guo HY, Wang HQ, Watkins JG, et al. (2019) First experimental tests of a new small angle slot divertor on DIII-D Nuclear Fusion. 59: 86054 |
Abrams T, Unterberg EA, Rudakov DL, et al. (2019) Impact of ELM control techniques on tungsten sputtering in the DIII-D divertor and extrapolations to ITER Physics of Plasmas. 26: 062504 |
Pitts RA, Bonnin X, Escourbiac F, et al. (2019) Physics basis for the first ITER tungsten divertor Nuclear Materials and Energy. 20: 100696 |
Shafer M, Covele B, Canik J, et al. (2019) Dependence of neutral pressure on detachment in the small angle slot divertor at DIII-D Nuclear Materials and Energy. 19: 487-492 |
Elder J, Stangeby P, Unterberg E, et al. (2019) Evidence of near-SOL tungsten accumulation using a far-SOL collector probe array and OEDGE modelling in the DIII-D metal rings L-mode discharges Nuclear Materials and Energy. 19: 287-294 |
Unterberg E, Donovan D, Duran J, et al. (2019) Use of isotopic tungsten tracers and a stable-isotope-mixing model to characterize divertor source location in the DIII-D metal rings campaign Nuclear Materials and Energy. 19: 358-363 |