DOE OSTI · 1894183
Radiative pulsed L-mode operation in ARC-class reactors
Abstract
Abstract A new ARC-class, highly-radiative, pulsed, L-mode, burning plasma scenario is developed and evaluated as a candidate for future tokamak reactors. Pulsed inductive operation alleviates the stringent current drive requirements of steady-state reactors, and operation in L-mode affords ELM-free access to ∼ 90 % core radiation fractions, significantly reducing the divertor power handling requirements. In this configuration the fusion power density can be maximized despite L-mode confinement by utilizing high-field to increase plasma densities and current. This allows us to obtain high gain in robust scenarios in compact devices with P fus > 1000 MW despite low confinement. We demonstrate the feasibility of such scenarios here; first by showing that they avoid violating 0D tokamak limits, and then by performing self-consistent integrated simulations of flattop operation including neoclassical and turbulent transport, magnetic equilibrium, and radiofrequency current drive models. Finally we examine the potential effect of introducing negative triangularity with a 0D model. Our results show high-field radiative pulsed L-mode scenarios are a promising alternative to the typical steady state advanced tokamak scenarios which have dominated tokamak reactor development.
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Frank, S. J. (ORCID:0000000184146987), Perks, C. J., Nelson, A. O. (ORCID:0000000296121936), Qian, T., Jin, S., Cavallaro, A. (ORCID:0000000288726740), Rutkowski, A., Reiman, A. (ORCID:0000000298767351), Freidberg, J. P. (ORCID:0000000249327085), Rodriguez-Fernandez, P., Whyte, D.. 2022-10-21. Radiative pulsed L-mode operation in ARC-class reactors. https://doi.org/10.1088/1741-4326%2Fac95ac
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