DIII-D RESEARCH OPPORTUNITIES FORUM FOR THE 2013 EXPERIMENTAL CAMPAIGN
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ID | Title | Research Area | Name | Affiliation |
Time Req'ed |
ITPA Joint Exp |
ITER IO Urgent Research Task |
10 details | Maintain low-rotation QH-mode with ECH only | Inductive Scenarios | GA | No | No | No | |
13 details | Compare edge particle transport in ELMing H-mode and QH-mode with and without NRMF | Inductive Scenarios | GA | No | No | No | |
14 details | Control of toroidal mode number of EHO | Inductive Scenarios | GA | No | No | No | |
15 details | Edge rotation shear threshold for QH-mode access | Inductive Scenarios | GA | No | No | No | |
16 details | Further development of QH-mode with strong co-Ip NBI torque | Inductive Scenarios | GA | No | No | No | |
41 details | Investigation of the effects of the EHO toroidal mode number on the edge particle transport | Inductive Scenarios | PPPL | No | No | No | |
53 details | QH-mode with low torque start-up | Inductive Scenarios | GA | No | No | No | |
61 details | Energy Transport During Electron-Dominated Heating of ITER-Relevant H-Mode Discharges | Inductive Scenarios | PPPL | Yes | No | No | |
109 details | Electron Heat Transport in E-Dominated Heating of ITER-like H-Mode Discharges with Modulated ECH | Inductive Scenarios | U of Wisconsin | Yes | No | No | |
115 details | QH-mode at low co-Ip torque using n=2 NRMF | Inductive Scenarios | GA | No | No | No | |
118 details | Dominant electron heated ITER baseline scenario studies | Inductive Scenarios | Columbia U | Yes | No | No | |
120 details | Optimizing non-resonant, nonaxisymmetric fields in QH-mode | Inductive Scenarios | GA | No | No | No | |
124 details | Electron Energy Transport during q0 control using modulated EC power | Inductive Scenarios | ORNL | No | No | No | |
127 details | Characterization of Intense Bursts of Millimeter Wave Emission in QH-mode Plasma | Inductive Scenarios | UC, Davis | Yes | No | No | |
140 details | q0 control with Counter-ECCD in ITER Baseline Discharges | Inductive Scenarios | Retired | No | No | No | |
194 details | Correlation of confinement and fluctuations with electron heating in ITER Baseline Scenario | Inductive Scenarios | GA | No | No | No | |
234 details | Study fishbone-like instability at the edge of QH-modes | Inductive Scenarios | Instituto Superior Tecnico, Lisboa, Portugal | No | No | No | |
243 details | 256: SOL width and divertor peak heat flux in QH-mode plasmas with/without n=3 fields | Inductive Scenarios | GA | No | No | No | |
246 details | Develop low-torque, high normalized fusion performance QH-mode for ITER baseline scenario | Inductive Scenarios | GA | No | No | No | |
247 details | Develop low-torque, high normalized fusion performance QH-mode for FNSF-AT scenario | Inductive Scenarios | GA | No | No | No | |
253 details | Study QH-mode with advanced fast ion diagnostics and codes | Inductive Scenarios | GA | No | No | No | |
257 details | Transport Investigation During Slow Current Ramp-Up and Ramp-Down [for ITER] | Inductive Scenarios | U of Wisconsin | No | Yes | No | |
260 details | ITER Baseline Scenario Demonstration | Inductive Scenarios | ITER Organization | No | Yes | No | |
261 details | Demonstration of stationary inductive solutions at low and moderate q95 | Inductive Scenarios | ITER Organization | No | No | No | |
263 details | Radiative divertor solutions in the ITER baseline scenario | Inductive Scenarios | ITER Organization | No | Yes | Yes | |
266 details | Understand resistive wall mode control physics in low-q95 plasmas | Inductive Scenarios | Columbia U | No | No | No | |
283 details | ITER Baseline Scenario Operation near the LH Threshold | Inductive Scenarios | ITER Organization | No | Yes | No | |
285 details | Access to advanced inductive operation in ITER | Inductive Scenarios | ITER Organization | No | Yes | No | |
286 details | Collisionality scaling of confinement in advanced inductive regimes | Inductive Scenarios | ITER Organization | No | Yes | No | |
292 details | Optimize electron pedestal pressure in low-torque ITER baseline plasmas | Inductive Scenarios | UCLA | No | No | No | |
297 details | ITER baseline scenario with low NBI torque | Inductive Scenarios | GA | No | No | No | |
300 details | Effect of triangularity in ITER shape and improved shaping | Inductive Scenarios | GA | No | No | No | |
303 details | Effect on lithium wall conditioning for Co-QH-mode and edge pedestal characteristics | Inductive Scenarios | GA | No | No | No | |
313 details | Hybrids with co-NBI QH-mode edge | Inductive Scenarios | GA | No | No | No | |
318 details | Current profile control for stable ITER baseline scenario plasmas | Inductive Scenarios | Columbia U | No | No | No | |
321 details | Access to low torque QH-mode using high beta low torque AI target with NRMF | Inductive Scenarios | GA | No | No | No | |
322 details | ELM pacing in low torque, electron heated ITER baseline | Inductive Scenarios | GA | No | No | No | |
323 details | Access to QH-mode with low NBI torque | Inductive Scenarios | GA | No | No | No | |
324 details | Document turbulence change with rotation in AI, and compare with theory | Inductive Scenarios | GA | No | No | No | |
330 details | QH-mode with TBM | Inductive Scenarios | GA | No | No | No | |
337 details | Routine current profile control in operation | Inductive Scenarios | GA | No | No | No | |
344 details | Evaluating Physics of QH-mode Stationary Enhanced Confinement Regime Without ELMs for the 2013 J | Inductive Scenarios | LLNL | No | No | No | |
375 details | QH-mode pedestal optimization | Inductive Scenarios | ORNL | No | No | No |