Abstract
AbstractLong-pulse operation of a self-sustained fusion reactor using toroidal magnetic containment requires control over the content of alpha particles produced by D-T fusion reactions. On the one hand, MeV-class alpha particles must stay confined to heat the plasma. On the other hand, decelerated helium ash must be expelled before diluting the fusion fuel. Here, we report results of kinetic-magnetohydrodynamic hybrid simulations of a large tokamak plasma that confirm the existence of a parameter window where such energy-selective confinement can be accomplished by exploiting internal relaxation events known as sawtooth crashes. The physical picture — a synergy between magnetic geometry, optimal crash duration and rapid particle motion — is completed by clarifying the role of magnetic drifts. Besides causing asymmetry between co- and counter-going particle populations, magnetic drifts determine the size of the confinement window by dictating where and how much reconnection occurs in particle orbit topology.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary
Reference73 articles.
1. ITER - the way to new energy. https://www.iter.org. Accessed 4 December (2021).
2. White, R.B. The theory of toroidally confined plasmas, 3rd edn (Imperial College Press, London, 2014).
3. Shafranov, V. D. Hydromagnetic stability of a current-carrying pinch in a strong longitudinal magnetic field. Zh. Tekh. Fiz 40, 241 (1970). [Sov. Phys. Tech. Phys. 15, 175 (1970)].
4. Kadomtsev, B. B. Disruptive instability in tokamaks. Sov. J. Plasma Phys. 1, 389 (1975). (Fizika Plazmy, vol. 1, Sept.-Oct. 1975, p. 710-715).
5. Nocente, M. et al. Generation and observation of fast deuterium ions and fusion-born alpha particles in JET D-3He plasmas with the 3-ion radio-frequency heating scenario. Nucl. Fusion 60, 124006 (2020).
Cited by
19 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献