The ARC pilot plant conceptual design study has been extended beyond its initial scope [B. N. Sorbom et al., FED 100 (2015) 378] to explore options for managing ∼525 MW of fusion power generated in a compact, high field (B0 = 9.2 T) tokamak that is approximately the size of JET (R0 = 3.3 m). Taking advantage of ARC's novel design – demountable high temperature superconductor toroidal field (TF) magnets, poloidal magnetic field coils located inside the TF, and vacuum vessel (VV) immersed in molten salt FLiBe blanket – this follow-on study has identified innovative and potentially robust power exhaust management solutions. The superconducting poloidal field coil set has been reconfigured to produce double-null plasma equilibria with a long-le...
For a recent Japanese (JA) DEMO reactor design (Rp: 8 m size), the exhausted power to the SOL (Psep)...
Power exhaust scenario and divertor design for a steady-state Japan (JA) DEMO and a pulse Europe (EU...
Extremely intense power exhaust channels are projected for tokamak-based fusion power reactors; a me...
The ARC pilot plant conceptual design study has been extended beyond its initial scope [B. N. Sorbom...
The ARC pilot plant conceptual design study has been extended beyond its initial scope [B. N. Sorbom...
Thermonuclear fusion is a potentially clean and limitless energy source that can substantially chang...
Power exhaust to the divertor and the conceptual design have been investigated for a steady-state DE...
Power exhaust scenario for the feasible DEMO plasmas and the divertor design have been studied with ...
The affordable, robust, compact (ARC) reactor is the product of a conceptual design study aimed at r...
Power handling and the divertor design has been investigated in steady-state Japan DEMO concept of 1...
Conventional divertor concepts for recent DEMOs (P_fus=1.5-2GW, R_p=7-9m) were summarized. Requireme...
The affordable, robust, compact (ARC) reactor is the product of a conceptual design study aimed at r...
The affordable, robust, compact (ARC) reactor is the product of a conceptual design study aimed at r...
Power exhaust scenario and divertor design for a steady-state Japan (JA) DEMO and a pulse Europe (EU...
A conceptual design has been developed for a moderate size (R = 6.0 m) high field (B = 13.1 T at the...
For a recent Japanese (JA) DEMO reactor design (Rp: 8 m size), the exhausted power to the SOL (Psep)...
Power exhaust scenario and divertor design for a steady-state Japan (JA) DEMO and a pulse Europe (EU...
Extremely intense power exhaust channels are projected for tokamak-based fusion power reactors; a me...
The ARC pilot plant conceptual design study has been extended beyond its initial scope [B. N. Sorbom...
The ARC pilot plant conceptual design study has been extended beyond its initial scope [B. N. Sorbom...
Thermonuclear fusion is a potentially clean and limitless energy source that can substantially chang...
Power exhaust to the divertor and the conceptual design have been investigated for a steady-state DE...
Power exhaust scenario for the feasible DEMO plasmas and the divertor design have been studied with ...
The affordable, robust, compact (ARC) reactor is the product of a conceptual design study aimed at r...
Power handling and the divertor design has been investigated in steady-state Japan DEMO concept of 1...
Conventional divertor concepts for recent DEMOs (P_fus=1.5-2GW, R_p=7-9m) were summarized. Requireme...
The affordable, robust, compact (ARC) reactor is the product of a conceptual design study aimed at r...
The affordable, robust, compact (ARC) reactor is the product of a conceptual design study aimed at r...
Power exhaust scenario and divertor design for a steady-state Japan (JA) DEMO and a pulse Europe (EU...
A conceptual design has been developed for a moderate size (R = 6.0 m) high field (B = 13.1 T at the...
For a recent Japanese (JA) DEMO reactor design (Rp: 8 m size), the exhausted power to the SOL (Psep)...
Power exhaust scenario and divertor design for a steady-state Japan (JA) DEMO and a pulse Europe (EU...
Extremely intense power exhaust channels are projected for tokamak-based fusion power reactors; a me...