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Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon (ORNL), L.P.Ku (PPPL), E.Strumberger (IPP-Garching), S.Luckhardt (UCSD), T.K.Mau(UCSD), H.McGuinness (RPI)
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Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

Dec 19, 2015

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Page 1: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

Update on Modeling of Power and Particle Control for ARIES-

Compact Stellarator

A.Grossman

UCSD

11/04/2004

Acknowledgements: P.Mioduszewski(ORNL) J. Lyon (ORNL), L.P.Ku (PPPL), E.Strumberger (IPP-Garching),

S.Luckhardt (UCSD), T.K.Mau(UCSD), H.McGuinness (RPI)

Page 2: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

10° NCSX vs. ARIES-CS

Islands at Helical Edge

Page 3: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

30° NCSX vs. ARIES-CS

Page 4: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

60° NCSX vs ARIES_CS

5 Islands Resolved at iota=0.6 (3/5 Island Chain)

Page 5: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

90° NCSX vs. ARIES-CS

Page 6: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

Plasma Column with Divertor and Baffle Plates At Island Helical Edge

Page 7: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

NCSX Divertor Concept

Page 8: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

Aries-CS Divertor Concepts

Baffle plates give higher neutral densities for improved pumping

island divertor

Page 9: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

Island divertor is like tokamak divertor

• Each island has the same basic topology as SN tokamak divertor, except x-lines helical.

• Smaller radial scale length requires higher densities than tokamak divertor. Achieved by confinement of recycled particles in closed islands.

Page 10: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

Island divertor highly optimizable via GOURDON

• Island size and position provide flexible way to optimize geometry.

• Lc -target/sep distance control via iota, Bz, and control coils.

• Lc directly impacts the perp/parallel transport. Comprehensive map of Lc via GOURDON is 1st step.

Page 11: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

3D Effects Important

• Toroidal variation of island shape – higher loads at islands cross-sections that are small radially.

• Segmented targets- Field lines periodically cross neutral clouds- these are high recycling zones in W7-AS (flux amp >10).

• Must tilt targets to avoid leading edges.

Page 12: Update on Modeling of Power and Particle Control for ARIES- Compact Stellarator A.Grossman UCSD 11/04/2004 Acknowledgements: P.Mioduszewski(ORNL) J. Lyon.

Conclusion• The magnetic field structures are somewhat

different in ARIES-CS and NCSX.• A non-stochastic 3/5 island chain (NCSX had

stochastic island remnants of small radial extent) at iota=0.6 has been observed outside the Aries-CS LCMS.

• Larger island width at the helical edge may allow the W7 island divertor concepts to work in ARIES-CS.

• An open divertor like NCSX cases without robust islands may also apply ARIES-CS.