DIII-D RESEARCH OPPORTUNITIES FORUM FOR THE 2019 EXPERIMENTAL CAMPAIGN
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ID | Title | Research Area | Name | Affiliation |
Time Req'ed |
Presentation |
ITPA Joint Exp |
ITER IO Urgent Research Task |
6 | H vs. D Core Transport Model Validation at High Te/Ti | Isotope mass Thrust | Grierson | GA | Yes | General | Yes | Yes |
26 | Determine the cause of RE beam final loss in post disruption vertical displacement events | Disruption Mitigation Thrust | Bardoczi | GA | No | Breakout | No | Yes |
98 | A new path to ELM mitigation | Torkil Jensen | Knolker | GA | Yes | Breakout | No | Yes |
103 | Comparison of high density ELM suppression in H and He to D | Isotope Mass Thrust | Evans | GA | No | Breakout | No | Yes |
115 | Role of fueling in determining the pedestal structure | Isotope Mass Thrust | Mordijck | The college of William and Mary | No | Breakout | Yes | Yes |
126 | Effect of Isotope Mass on Intrinsic Rotation and Momentum Transport in H-Mode Plasmas | Isotope Mass Thrust | Ernst | Massachusetts Institute of Technology | Yes | Breakout | No | Yes |
141 | Isotope effect and the role of divertor geometry | Isotope Mass Thrust | Casali | U of Tennessee, Knoxville | Yes | Breakout | Yes | Yes |
149 | QH-mode for Q=10 IBS at Zero NBI torque by reducing the pressure profile peaking | Inductive Scenarios | Garofalo | GA | Yes | Breakout | No | Yes |
151 | Test hypothesis for the cause of improved energy confinement at lower NBI torque | Pedestal Physics and Pedestal Structure & QH Thrust | Garofalo | GA | Yes | Breakout | No | Yes |
177 | Evaluate the effect of penetration theory on RMP ELM suppression | ELM Control | WANG | ASIPP | Yes | Breakout | Yes | Yes |
178 | Use NBI to evaluate n=2 RMP penetration position | 3DSP | WANG | ASIPP | Yes | Breakout | Yes | Yes |
183 | Evaluate the effect of penetration theory on RMP ELM suppression | ELM Control | WANG | ASIPP | Yes | Breakout | Yes | Yes |
184 | Use NBI to evaluate n=2 RMP penetration position | 3DSP | WANG | ASIPP | Yes | Yes | Yes | |
242 | Controlled low Z melting experiments using DiMES in support of ITER | Surface Evolution | Rudakov | UCSD | Yes | Breakout | Yes | Yes |
264 | Impact of ELM size and footprint on W sputtering and W leakage from open & closed divertors | Impact of Divertor Geometry on Divertor Leakage and SOL Impurity Transport - SAS-1W Potential Thrust | Abrams | GA | Yes | Breakout | No | Yes |
272 | High Density Electron Heating With O-Mode | Core-Edge Integration Task Force incorporating Thrust: Core-Edge Scenario Optimization | Petty | GA | No | Breakout | No | Yes |
336 | Pushing Steady-State Hybrid Scenario to Lower q95, Higher Beta and Higher Fusion Gain | Steady State Scenarios & High qmin Thrust | Petty | GA | No | Breakout | No | Yes |
337 | ECRH plasma production on DIII-D | Materials Migration and Mitigation | Wauters | LPP-ERM-KMS � Brussels � Belgium (EUROfusion member) | No | Breakout | Yes | Yes |
345 | ECRH plasma production on DIII-D | Heating & Current Drive Physics (including Thrust: Validation of New Current Drive Tools) | Wauters | LPP-ERM-KMS � Brussels � Belgium (EUROfusion member) | No | Breakout | Yes | Yes |
347 | ITER plasma initiation and ECH assist | Control | Walker | GA | No | Breakout | Yes | Yes |
357 | Power loading at toroidal PFC gaps | Isotope Mass Thrust | Rudakov | UCSD | No | Breakout | Yes | Yes |
365 | Power Threshold Studies in Mixed Ion Species Plasmas | Isotope Mass Thrust | Plank | IPP Garching | Yes | Breakout | Yes | Yes |
378 | Impact of isotope and first wall on plasma (Te, Zeff, q) during IP ramp-up | Isotope mass Thrust | Mailloux | UKAEA | Yes | Breakout | Yes | Yes |
379 | Compare H-mode plasmas with controlled ELMs in H, He, D | Isotope mass Thrust | Mailloux | UKAEA | Yes | Breakout | Yes | Yes |
380 | Investigate impact of isotope on plasmas at low and high beta/power and at low and high torque | Isotope mass Thrust | Mailloux | UKAEA | Yes | Breakout | Yes | Yes |
381 | Evaluate the effect of penetration theory on RMP ELM suppression | DIII-D/EAST Task Force/Thrust | WANG | ASIPP | Yes | Breakout | Yes | Yes |
382 | Use NBI to evaluate n=2 RMP penetration position | DIII-D/EAST Task Force/Thrust | WANG | ASIPP | Yes | Breakout | Yes | Yes |
383 | Active MHD Spectroscopy of Edge Harmonic Oscillation (EHO) Mode Control for QH-mode | Pedestal Physics and Pedestal Structure & QH Thrust | WANG | ASIPP | Yes | Breakout | Yes | Yes |
384 | Active MHD Spectroscopy of Edge Harmonic Oscillation (EHO) Mode Control for QH-mode | DIII-D/EAST Task Force/Thrust | WANG | ASIPP | Yes | Breakout | Yes | Yes |
394 | ELM pacing during ITER-like current ramp-up/down | ELM Control | Bortolon | PPPL | No | Breakout | No | Yes |
395 | ELM pacing during ITER-like current ramp-up/down | ELM Control | Bortolon | PPPL | No | Breakout | No | Yes |
442 | Access to small ELM regime in DIII-D high �²P scenario | DIII-D/EAST Task Force/Thrust | Qian | ASIPP | No | Breakout | Yes | Yes |
443 | Compatibility of highly radiative divertor with high beta_p scenario | DIII-D/EAST Task Force/Thrust | Wang | ASIPP | Yes | Breakout | No | Yes |
484 | - Feasibility of plasma performance and stability of ITER steady-state operation with NB+EC CD | Steady State Scenarios & High qmin Thrust | Polevoi | ITER Organization | No | Breakout | No | Yes |
492 | Understanding outliers of ITER error field correction criteria | 3DSP | Park | PPPL | Yes | Breakout | Yes | Yes |
537 | ELM pacing during ITER-like current ramp-up/down | ELM Control | Bortolon | PPPL | No | Breakout | No | Yes |
543 | Strategy for ELM control | ELM Control | Loarte-Prieto | ITER Organization | Yes | General | No | Yes |
544 | 3-D ELM suppressed regime access/exit | ELM Control | Loarte-Prieto | ITER Organization | Yes | General | No | Yes |
545 | 3-D ELM suppressed H-mode and pellet fuelling | ELM Control | Loarte-Prieto | ITER Organization | Yes | General | No | Yes |
554 | ELM pacing during ITER-like current ramp-up/down | ELM Control | Bortolon | PPPL | No | Breakout | No | Yes |