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
3High qmin with betaN > 4Steady State Scenarios & High qmin ThrustVictorLLNLYesBreakoutNoNo
4Effect of rotation on confinement and stability in the high qmin scenarioSteady State Scenarios & High qmin ThrustVictorLLNLYesBreakoutNoNo
13Impact of broadened pressure profile on AE stability in qmin>2 reversed shear steady state scenarioSteady State Scenarios & High qmin ThrustCollinsORNLYesBreakoutYesNo
21High performance in the qmin~1.5 scenarioSteady State Scenarios & High qmin ThrustThomeGAYesBreakoutNoNo
22Optimizing of q and fast-ion profiles in high-qmin scenarioSteady State Scenarios & High qmin ThrustThomeGANoBreakoutNoNo
23Simultaneous Control of n=1 and n=2 Resistive Wall Modes and Stability MeasurementsSteady State Scenarios & High qmin ThrustBatteyColumbia UYesBreakoutNoNo
59Assess kinetic RWM stability of ITER steady-state scenarioSteady State Scenarios & High qmin ThrustHansonColumbia UYesBreakoutNoNo
61Measure the influence of profile broadness on global stabilitySteady State Scenarios & High qmin ThrustHansonColumbia UYesBreakoutNoNo
101ELM suppression by n=1 Ex-Vessel Coil at high qminSteady State Scenarios & High qmin ThrustHuPPPLYesBreakoutNoNo
110Controlled ITB formation with narrow current channelSteady State Scenarios & High qmin ThrustVictorLLNLYesBreakoutNoNo
117Validate theory-based integrated scenario modeling for high qminSteady State Scenarios & High qmin ThrustParkORNLYesBreakoutNoNo
118High density & high qminSteady State Scenarios & High qmin ThrustParkORNLYesBreakoutNoNo
119High qmin in ITER shapeSteady State Scenarios & High qmin ThrustParkORNLYesBreakoutNoNo
121High qmin in lower elongation, Z = +10 cm plasma with far off-axis NBCDSteady State Scenarios & High qmin ThrustParkORNLYesBreakoutNoNo
125Optimize BT for high qminSteady State Scenarios & High qmin ThrustParkORNLYesBreakoutNoNo
165Increase the ideal MHD limits, and the passively stable operational space, of steady-state plasmasSteady State Scenarios & High qmin ThrustTurcoColumbia UYesBreakoutNoNo
166Impact of EC location and CD on current evolution, confinement and stability of steady-state plasmasSteady State Scenarios & High qmin ThrustTurcoColumbia UYesBreakoutNoNo
167Proximity of tearing mode onset to ideal limits in high-beta plasmasSteady State Scenarios & High qmin ThrustTurcoColumbia UYesBreakoutNoNo
169Study the access to the hybrid regime, the conditions for its sustainment and its consequencesSteady State Scenarios & High qmin ThrustTurcoColumbia UYesBreakoutNoNo
189Mitigation of AEs in high performance discharges using high off-axis current driveSteady State Scenarios & High qmin ThrustKramerPPPLNoBreakoutNoNo
200Locking Avoidance in high q_min by Dynamic Error Field Correction Assisted by 3D Field EntrainmentSteady State Scenarios & High qmin ThrustOkabayashiPPPLYesBreakoutNoNo
219Detection of marginally stable modes in high qmin scenarios using the MM MHD spectroscopy vs shapeSteady State Scenarios & High qmin ThrustMunarettoPPPLYesBreakoutNoNo
221Detection of marginally stable modes in high qmin scenarios using the MM MHD spectroscopy vs q95Steady State Scenarios & High qmin ThrustMunarettoPPPLYesBreakoutNoNo
222Apply MM MHD spectroscopy results from #219/#221 experiments to achieve ELM suppression in high qminSteady State Scenarios & High qmin ThrustMunarettoPPPLYesBreakoutNoNo
223Use the multimode MHD spectroscopy in real time to control the NBI and modify the modes stabilitySteady State Scenarios & High qmin ThrustMunarettoPPPLYesBreakoutNoNo
228Use new off-axis CD tools to improve noninductive sustainability of high beta AT plasmaSteady State Scenarios & High qmin ThrustGarofaloGAYesBreakoutNoNo
265High Pedestal in Hybrid Scenario With Unfavorable Grad-B Drift DirectionSteady State Scenarios & High qmin ThrustPettyGANoBreakoutNoNo
268Map and optimize the fully non-inductive operational space for the steady-state hybrid scenarioSteady State Scenarios & High qmin ThrustTurcoColumbia UYesBreakoutNoNo
286Assess the benefits of the hybrid vs the high-qmin AT scenariosSteady State Scenarios & High qmin ThrustTurcoColumbia UYesBreakoutNoNo
298Optimize fast ion confinement in high qmin plasmas at high beta !Steady State Scenarios & High qmin ThrustNazikianGAYesBreakoutNoNo
318Exploring the role of nonlinear MHD in triggering tearing modes in high-qmin and steady-state hybridSteady State Scenarios & High qmin ThrustChapmanU of WisconsinYesBreakoutNoNo
319Exploring the role of fluctuation-based dynamos in magnetic flux pumpingSteady State Scenarios & High qmin ThrustChapmanU of WisconsinYesBreakoutNoNo
333Validation of Predict First Simulations using CCOANB 210Steady State Scenarios & High qmin ThrustGriersonGAYesBreakoutNoNo
336Pushing Steady-State Hybrid Scenario to Lower q95, Higher Beta and Higher Fusion GainSteady State Scenarios & High qmin ThrustPettyGANoBreakoutNoYes
431Profile control for high qmin steady state scenarioSteady State Scenarios & High qmin ThrustWehnerLehighNoBreakoutNoNo
432Profile control for high qmin steady state scenarioSteady State Scenarios & High qmin ThrustWehnerLehighNoBreakoutNoNo
433Profile control for high qmin steady state scenarioSteady State Scenarios & High qmin ThrustWehnerLehighNoBreakoutNoNo
447Optimizing Transport Through Magnetic ShearSteady State Scenarios & High qmin ThrustMcKeeU of WisconsinNoBreakoutNoNo
449m/n=2/1 NTM control by ECCD in steady state hybridSteady State Scenarios & High qmin ThrustBardocziGANoBreakoutNoNo
484- Feasibility of plasma performance and stability of ITER steady-state operation with NB+EC CDSteady State Scenarios & High qmin ThrustPolevoiITER OrganizationNoBreakoutNoYes
488Steady-State Hybrids in Hydrogen With Higher Bootstrap FractionSteady State Scenarios & High qmin ThrustPettyGANoBreakoutNoNo
563Probe RWM stability using off-axis NBISteady State Scenarios & High qmin ThrustHansonColumbia UNoBreakoutNoNo