Overview of the Helios Design: A Practical Planar Coil Stellarator Fusion Power Plant
C.P.S. Swanson, S.T.A. Kumar, D.W. Dudt, E.R. Flom, W.B. Kalb, T.G. Kruger, M.F. Martin, J.R. Olatunji, S. Pasmann, L.Z. Tang, J. von der Linden, J. Wasserman, M. Avida, A.S. Basurto, M. Dickerson, N. de Boer, M.J. Donovan, A.H. Doudna Cate, D. Fort, W. Harris, U. Khera, A. Koen

TL;DR
The Helios design presents a practical, high-performance planar coil stellarator fusion power plant with innovative features like a novel divertor, high-temperature superconducting coils, and a focus on maintenance and operational longevity.
Contribution
This paper introduces a detailed preconceptual design of the Helios stellarator, emphasizing its practical engineering features, stability, and steady-state operation capabilities.
Findings
Produces 1.1 GW thermal power and 390 MW net electric power.
Utilizes high-temperature superconducting coils with 40-year operational lifetime.
Achieves 88% capacity factor with a biennial maintenance cycle.
Abstract
Thea Energy, Inc. has developed the preconceptual design for "Helios," a fusion power plant based on the planar coil stellarator architecture. In this overview paper, the design is summarized and the reader is referred to the other papers for more detail. The Helios design is based around a two-field-period quasi-axisymmetric ("QA") stellarator equilibrium with aspect ratio 4.5 and a novel tokamak-like X-point divertor. The natural stability, low recirculating power, and steady-state capability of the stellarator are leveraged. Stability and transport are calculated using state-of-the-art, high-fidelity codes and grounded in measured performance of existing experiments. The electromagnetic coil set is high-temperature superconducting ("HTS") and consists of 12 large, plasma-encircling coils like the toroidal field coils of a tokamak, and 324 smaller, field-shaping coils. All coils are…
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Taxonomy
TopicsMagnetic confinement fusion research · Superconducting Materials and Applications · Frequency Control in Power Systems
