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Large vacuum flux surfaces generated by tilted planar coils

Plasma Physics 2019-06-26 v2

Abstract

Helical equilibria can be generated by arrangements of planar coils similar to tokamaks, but without a central solenoid and with the toroidal field (TF) coils tilted with respect to the vertical. This is known from earlier numerical works, e.g. P.E. Moroz, Phys.Plasmas 2, 4269 (1995). However, such concept tends to need large coils (of low aspect ratio) but form small plasmas (of large aspect ratio). Here it is numerically shown that larger, more attractive vacuum flux surfaces -- relative to the size of the device -- can be generated by carefully optimizing the inclination of the TF coils and currents in the various coil-sets. Vacuum configurations of aspect ratios as low as 4 are found for 6 tilted TF circular coils. Higher numbers of TF coils have advantages (smaller effective ripple) and disadvantages (lower rotational transform, smaller plasma). Finally, the aspect-ratio AA of the vacuum flux surfaces is quantified as a function of the ratio AcA_c of the coil-radius to the radial location of the coil-center. It is found that, in order to minimize AA, it is beneficial to interlink or marginally interlink the TF coils (Ac1A_c \lesssim 1).

Keywords

Cite

@article{arxiv.1809.10798,
  title  = {Large vacuum flux surfaces generated by tilted planar coils},
  author = {Jessica L. Li and Jacob Austin and Ben Y. Israeli and Kenneth C. Hammond and Francesco A. Volpe},
  journal= {arXiv preprint arXiv:1809.10798},
  year   = {2019}
}

Comments

21 pages, 12 figures

R2 v1 2026-06-23T04:21:18.921Z