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 |
| 40 | characterize divertor detachment in closed divertor | Particle Balance and Impact of Divertor Closure Including SAS on Detachment Thrust | Wang | GA | Yes | Breakout | No | No |
| 45 | Coupling of drift-closure v.s. good performance pedestal assisted with dissipative divertor | Particle Balance and Impact of Divertor Closure Including SAS on Detachment Thrust | Wang | GA | Yes | Breakout | No | No |
| 154 | How does divertor drift affect upstream profiles? | Core-Edge Integration Task Force incorporating Thrust: Core-Edge Scenario Optimization | Wang | GA | Yes | Breakout | No | No |
| 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 | |
| 270 | Evolution of edge turbulence and turbulence flow near midplane during divertor detachment | Div/SOL Turbulence and transport | Wang | UCLA | No | Breakout | No | No |
| 293 | Divertor detachment control based on Langmuir Probes measurement | Control | Wang | GA | Yes | Breakout | No | No |
| 331 | Minimize upstream density for divertor detachment and test radiation detachment model | Impurity Radiative Divertor Dependence on Divertor Closuree | Wang | GA | Yes | Breakout | No | No |
| 332 | Detachment at horizontal and vertical targets | Advanced Magnetic Configurations | Wang | GA | Yes | Breakout | No | No |
| 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 |
| 413 | Redistribute plasma momentum and particles in divertor due to the coupling of drift and sheath | SOL Flows | Wang | GA | Yes | Breakout | No | No |
| 414 | Quasi-coherent fluctuations near the divertor plate | Div/SOL Turbulence and transport | Wang | GA | No | Breakout | No | No |
| 415 | Power and momentum detachment in impurity seeded plasmas and test radiation detachment model | Dissipative Divertor Physics | Wang | GA | Yes | Breakout | No | No |
| 439 | Exploring high-frequency small-ELM regime in hybrid scenario on DIII-D | DIII-D/EAST Task Force/Thrust | Wang | ASIPP | Yes | Breakout | No | No |
| 443 | Compatibility of highly radiative divertor with high beta_p scenario | DIII-D/EAST Task Force/Thrust | Wang | ASIPP | Yes | Breakout | No | Yes |
| 480 | Radiative divertor in high-betap plasma by utilizing SAS and local impurity injection | DIII-D/EAST Task Force/Thrust | Wang | GA | Yes | Breakout | No | No |