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Research Needs for Magnetic Fusion Energy Sciences - US Burning ...

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17. P.s. krstic, F.W. meyer, y.k. -m. Peng, d.l. hillis, l.R. baylor, R.h. Goulding, J.h. harris,<br />

Fundamental science of the synergy of multi-species interactions in a high plasma-heat-flux<br />

environment<br />

18. b. labombard, Towards building a credible vision <strong>for</strong> a DEMO-class fusion reactor: Addressing<br />

the ‘Knowledge Gaps’ and ‘Show-Stoppers’ in Edge Plasma Transport<br />

19. a.W. leonard, A <strong>Fusion</strong> Development Facility to Test Divertor and PFC Solutions <strong>for</strong> DEMO<br />

20. a.W. leonard, s. allen, t. Petrie and P. stangeby, Development and Validation of a Boundary<br />

Plasma Model<br />

21. R.P. majeski, J.P. allain, h. Ji, n. morley, m. nornberg, and d. Ruzic, Liquid Metal Plasma-<br />

Facing Components<br />

22. J. menard, J.-k. Park, and s.a. sabbagh, Physics and engineering research needs <strong>for</strong> 3D coil<br />

systems <strong>for</strong> a tokamak DEMO<br />

23. n.b. morley, m. abdou, a. ying, m. sawan, J. blanchard, c. Wong, b.J. merrill, and P.<br />

calderoni, Capitalizing on the ITER Opportunity – an ITER-TBM Experimental Thrust<br />

24. R.e. nygren, Future Plasma Facing Components (PFCs) & In-vessel Components (IVCs):<br />

Strengthened Sustained and Integrated Approach <strong>for</strong> Modeling and Testing HHFC<br />

25. R.e. nygren, In-vessel Engineering Instrumentation <strong>for</strong> Future <strong>Fusion</strong> Devices,<br />

26. W.a. Peeble and J. irby, <strong>Research</strong> Thrust to Address Major Measurement Gaps<br />

27. PWi Panel, PWI Gaps vs. Tools: General Requirements on the Tools<br />

28. t.d. Rognlien, d. Ryutov, m. makowski, v. soukhanovski, m. Umansky, R. cohen, d. hill<br />

and i. Joseph, Innovative divertor development to solve the plasma heat-flux problem<br />

29. t.d. Rognlien, Prediction of PFC plasma fluxes by improved edge/scrape-off-layer simulations<br />

30. c.h. skinner, Management of dust in fusion devices<br />

31. R.d. stambaugh, v.s. chan, a.m. Garofalo, et al., <strong>Research</strong> Thrusts Made Possible by a <strong>Fusion</strong><br />

Development Facility—executive summary<br />

32. R. d. stambaugh, v.s. chan, et al., <strong>Research</strong> Thrusts Made Possible by a <strong>Fusion</strong> Development<br />

Facility<br />

33. P. stangeby, Carbon as a flow-through, consumable PFC material<br />

34. P. stangeby, Diagnostic investments required to identify missing physics controlling PWI<br />

35. P. stangeby, FDF: PWI issues and research opportunities<br />

36. P. stangeby, The process of identifying the physics controlling PWI is significantly incomplete,<br />

preventing reliable scaling of PWI results to future devices<br />

405

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