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 |
40 details | MGI with applied n=1 RMP fields | Disruption Mitigation | Fiat Lux LLC | No | No | No | |
58 details | Progressing Towards a Staged Approach to Disruption Mitigation | Disruption Mitigation | GA | Yes | No | Yes | |
113 details | Heat Load during slow current quench phase of disruptions/VDEs and its relation with poloidal halo c | Disruption Mitigation | ITER Organization | Yes | No | Yes | |
114 details | Toroidal peaking of radiation, response time for triggering TQ and mitigation efficiency during mass | Disruption Mitigation | ITER Organization | Yes | No | Yes | |
129 details | Optimization and Control of ITER-like MGI | Disruption Mitigation | GA | Yes | Yes | Yes | |
131 details | Understanding runaway equilibrium to minimize damage hazard | Disruption Mitigation | Yes | Yes | Yes | ||
132 details | Dissipation & Control of RE from ITER-like LSN targets | Disruption Mitigation | GA | No | No | Yes | |
133 details | Fast Runaway Shutdowns by MGI | Disruption Mitigation | GA | Yes | Yes | Yes | |
135 details | Measurement of RE diffusion to center post | Disruption Mitigation | UCSD | No | No | Yes | |
136 details | Disruption main chamber heat loads | Disruption Mitigation | UCSD | No | Yes | Yes | |
139 details | TQ radiation distribution from R-2 MGI | Disruption Mitigation | UCSD | No | No | Yes | |
141 details | Studies of RE final loss | Disruption Mitigation | UCSD | No | No | Yes | |
150 details | Sensitivity study of toroidally-asymmetric halo current to error field during VDE | Disruption Mitigation | PPPL | No | No | No | |
165 details | D2 + few % Ne shattered pellets for disruption mitigation | Disruption Mitigation | ORNL | No | No | Yes | |
166 details | Effect of q95 on SPI shutdown | Disruption Mitigation | ORNL | No | No | Yes | |
167 details | Control of radiation asymmetries by application of external field on SPI/MGI shutdown | Disruption Mitigation | ORNL | No | No | Yes | |
168 details | Influence of the delay time between multiple massive gas injections at different toroidal locations | Disruption Mitigation | ORNL | No | No | Yes | |
169 details | Runaway flattop mitigation by Neon shattered pellet injection | Disruption Mitigation | ORNL | No | No | Yes | |
171 details | Test of the argon pellet injector | Disruption Mitigation | ORNL | No | No | Yes | |
191 details | Critical electric field for runaway electron growth and decay under quiescent conditions | Disruption Mitigation | Columbia U | Yes | Yes | No | |
227 details | Mechanisms leading to termination of the runaway discharges and effects on PFC energy deposition | Disruption Mitigation | ITER Organization | Yes | No | Yes | |
229 details | CQ de-confinement of REs using pulsed impurity injection | Disruption Mitigation | ITER Organization | Yes | No | Yes | |
237 details | Critical electric field for runaway electron growth and decay under quiescent conditions | Disruption Mitigation | Massachusetts Institute of Technology | Yes | Yes | No | |
250 details | Plateau Ecrit with MGI | Disruption Mitigation | GA | No | Yes | Yes | |
254 details | Neon SPI injection into early CQ to stunt RE formation | Disruption Mitigation | GA | No | No | No | |
377 details | NTM locking disruption avoidance by the EM torque with toroidal-phase forward magnetic feed | Disruption Mitigation | PPPL | No | No | No |