DIII-D RESEARCH OPPORTUNITIES FORUM FOR THE 2015 EXPERIMENTAL CAMPAIGN
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| ID | Title | Research Area | Name | Affiliation |
Time Req'ed |
ITPA Joint Exp |
ITER IO Urgent Research Task |
| 11 | Inward pinch vs neutral fueling | Turbulence & Transport | The college of William and Mary | No | Yes | Yes | |
| 12 | Test ZF model with RMPs | LH Physics | The college of William and Mary | No | No | Yes | |
| 14 | Effect of pre-existing MHD activity on shattered pellet injection | Disruption Mitigation | ORNL | No | No | Yes | |
| 15 | Interaction of neon shattered pellets with post-disruption runaway electron plateaus | Disruption Mitigation | ORNL | No | No | Yes | |
| 16 | Thermal quench MHD activity driven by shattered pellet injection | Disruption Mitigation | ORNL | No | No | Yes | |
| 96 | improved ITER performance due to fueling | Turbulence & Transport | GA | No | Yes | Yes | |
| 138 | Understand return of ELMs in low torque QH-mode at low q95 | Inductive Scenarios | GA | Yes | No | Yes | |
| 177 | Actuator Sharing and Integrated Control Demonstration for ITER | Control | ITER Organization | Yes | Yes | Yes | |
| 186 | Transport evolution at the onset of RMP ELM suppression | ELM Stability & Control | GA | Yes | Yes | Yes | |
| 190 | Detection of magnetic islands and Coalescence Instability in RMP ELM suppression | ELM Stability & Control | GA | Yes | Yes | Yes | |
| 193 | Fluctuation measurements in MECH limiter H-modes with RMP fields | ELM Stability & Control | GA | No | No | Yes | |
| 199 | ELM Suppression in Low rotation Deuterium Plasmas | ELM Stability & Control | GA | No | No | Yes | |
| 227 | Core and edge particle transport and sources | Turbulence & Transport | VTT Technical Research Centre | No | Yes | Yes | |
| 232 | Fast Er profile changes at the onset of ELM suppression | ELM Stability & Control | GA | No | No | Yes | |
| 245 | Effect of the ablation path length on SPI shutdown | Disruption Mitigation | ORNL | No | No | Yes | |
| 248 | Pellet pacing with true 0.9mmx1.9mm D2 pellets | ELM Stability & Control | ORNL | No | No | Yes | |
| 255 | IBS low torque disruption avoidance through modified sawtooth stability | 3D & Stability Physics | Department of Energy | No | No | Yes | |
| 260 | Compatibility of pellet fuelling with ELM suppression with I coils. | Pedestal Transport & Control | ITER Organization | Yes | No | Yes | |
| 261 | Optimum pellet injection geometry for pellet triggering with minimum throughput/PFC power fluxes | Pedestal Transport & Control | ITER Organization | Yes | No | Yes | |
| 262 | Demonstration of integrated ELM-paced pellet fuelled H-mode plasma in ITER-relevant range | Pedestal Transport & Control | ITER Organization | Yes | Yes | Yes | |
| 263 | Type I ELMy H-modes and ELM suppression at low Pinp/PL-H with low torque and extension to high beta | ELM Stability & Control | ITER Organization | Yes | No | Yes | |
| 264 | Pedestal particle transport in ELM suppressed H-modes on medium/high Z impurities and optimization | Pedestal Transport & Control | ITER Organization | Yes | No | Yes | |
| 265 | QH-mode compatibility with pellet fuelling, radiative divertor and beta Pinput/PL-H | EHO Stability & Control | ITER Organization | Yes | No | Yes | |
| 266 | Pedestal particle transport mechanisms for high density plasmas with low core neutral source | Pedestal Transport & Control | ITER Organization | Yes | Yes | Yes | |
| 267 | Characterization of EHO for the improvement of its saturated kink-peeling mode physics basis | EHO Stability & Control | ITER Organization | Yes | No | Yes | |
| 271 | Pellet ELM Pacing in the Low-Torque ITER Scenario | ELM Stability & Control | ORNL | No | No | Yes | |
| 272 | Study of runaway plateau impurity assimilation and final loss | Disruption Mitigation | UCSD | No | No | Yes | |
| 273 | Disruption mitigation with large shell pellet | Disruption Mitigation | UCSD | No | No | Yes | |
| 282 | Measure poloidal asymmetry of SPI injection | Disruption Mitigation | GA | No | No | Yes | |
| 283 | Assess RE suppression in early CQ with less perturbative SPI | Disruption Mitigation | GA | No | No | Yes | |
| 287 | Prong 3 approach to ELM Control in ITER Baseline Scenario (low torque) | ELM Stability & Control | UCSD | No | No | Yes | |
| 288 | Viability of ELM Control by Pellet Pacing in the ITER Baseline Scenario | ELM Stability & Control | UCSD | No | No | Yes | |
| 289 | Optimize RMP ELM control in low torque ITER Baseline at high collisionality | Inductive Scenarios | UCSD | No | No | Yes | |
| 302 | Characterize heat load at injection port for SPI | Disruption Mitigation | ORNL | No | No | Yes | |
| 303 | Effect of MHD on radiation asymmetries during SPI injection | Disruption Mitigation | ORNL | No | No | Yes | |
| 304 | Test of dual SPI injection for disruption mitigation | Disruption Mitigation | ORNL | No | No | Yes | |
| 306 | Effect of impurity species on runaway dissipation | Disruption Mitigation | ORNL | No | No | Yes | |
| 312 | Impact of plasma parameter on SPI performance | Disruption Mitigation | ITER Organization | No | No | Yes | |
| 313 | RMP ELM suppression in low torque ITER Baselines | Inductive Scenarios | UCSD | No | No | Yes | |
| 317 | Disruption mitigation with x-point pre-puff | Disruption Mitigation | UCSD | No | No | Yes | |
| 318 | VDE upper vs lower heat load study | Disruption Mitigation | UCSD | No | No | Yes | |
| 331 | Inner/Outer ELM Divertor Energy Deposition Comparison | SOL and Divertor Physics | AKIMA Infrastructure Services | No | No | Yes | |
| 363 | Effect of gas pressure on RE plateau mitigation | Disruption Mitigation | GA | No | No | Yes | |
| 366 | Far SOL fluxes and link to detachment | SOL and Divertor Physics | UCSD | No | No | Yes | |
| 383 | Measurements of TQ impurity transport during mitigated disruptions | Disruption Mitigation | ORNL | No | No | Yes | |
| 384 | Physics of leading edge power loading in support of ITER divertor design | PMI Physics | UCSD | No | Yes | Yes | |
| 431 | Divertor heat flux modulation during RMP ELM suppression | ELM Stability & Control | GA | No | Yes | Yes | |
| 444 | Helium scenarios for ITER | Inductive Scenarios | ITER Organization | No | Yes | Yes |