Article Contents
PERSPECTIVE   Open Access     Cite

A promising approach to steady-state fusion: High-temperature superconducting strong-field stellarator with precise omnigenity

More Information
  • Corresponding author: bnwan@ipp.ac.cn
  • The stellarator has inherent advantages over the tokamak in achieving steady-state operation, especially due to its absence of disruptions and lack of need for current drive and the associated recirculating power. In recent years, there have been remarkable advances in the field of stellarator optimization, where precisely quasi-symmetric and precisely quasi-isodynamic magnetic configurations have been achieved with coils, allowing the neoclassical transport and energetic particle losses of stellarators to be reduced to levels comparable to those of tokamaks. At the same time, the development of high-temperature superconducting magnet technology will potentially double the magnetic field strength of stellarators. While these strong fields are expected to introduce new challenges, and while turbulent transport remains a common challenge for both stellarators and tokamaks, the combination of these physical and technological advances results in the expectation that stellarators will become a competitive approach to tokamaks for realizing steady-state fusion.
  • 加载中
  • [1] Beidler, C.D., Smith, H.M., Alonso, A., et al. (2021). Demonstration of reduced neoclassical energy transport in Wendelstein 7-X. Nature 596, 221-226.

    View in Article CrossRef Google Scholar

    [2] Landreman, M., and Paul, E. (2022). Magnetic Fields with Precise Quasisymmetry for Plasma Confinement. PRL 128, 035001.

    View in Article CrossRef Google Scholar

    [3] Landreman, M., Buller, S., and Drevlak, M. (2022). Optimization of quasi-symmetric stellarators with self-consistent bootstrap current and energetic particle confinement. Phys. Plasmas 29, 082501.

    View in Article Google Scholar

    [4] Wechsung, F., Landreman, M., Giuliani, A., et al. (2022). Precise stellarator quasi-symmetry can be achieved with electromagnetic coils. Proc. Natl. Acad. Sci. USA 119, e2202084119.

    View in Article CrossRef Google Scholar

    [5] Goodman, A., Mata, K.C., Henneberg, S.A., et al. (2022). Constructing precisely quasi-isodynamic magnetic fields. Preprint at arXiv. https://doi.org/10.48550/arXiv.2211.09829.

    View in Article Google Scholar

    [6] Sánchez, E., Velasco, J.L., Calvo, I., et al. (2023). A quasi-isodynamic configuration with good confinement of fast ions at low plasma β. Nucl. Fusion 63, 066037.

    View in Article CrossRef Google Scholar

    [7] Beurskens, M.N.A., Bozhenkov, S.A., Ford, O., et al. (2021). Ion temperature clamping in Wendelstein 7-X electron cyclotron heated plasmas. Nucl. Fusion 61, 116072.

    View in Article CrossRef Google Scholar

    [8] Alonso, J.A., Calvo, I., Carralero, D., et al. (2022). Physics design point of high-field stellarator reactors. Nucl. Fusion 62, 036024.

    View in Article CrossRef Google Scholar

    [9] Zhu, C., Hudson, S.R., Song, Y., et al. (2018). New method to design stellarator coils without the winding surface. Nucl. Fusion 58, 016008.

    View in Article CrossRef Google Scholar

    [10] Bruzzone, P., Fietz, W.H., Minervini, J.V., et al. (2018). High temperature superconductors for fusion magnets. Nucl. Fusion 58, 103001.

    View in Article CrossRef Google Scholar

  • Cite this article:

    Guosheng Xu, Zhiyuan Lu, Dehong Chen, Baonian Wan. A promising approach to steady-state fusion: High-temperature superconducting strong-field stellarator with precise omnigenity[J]. The Innovation, 2024, 5(1). https://doi.org/10.1016/j.xinn.2023.100537
    Guosheng Xu, Zhiyuan Lu, Dehong Chen, Baonian Wan. A promising approach to steady-state fusion: High-temperature superconducting strong-field stellarator with precise omnigenity[J]. The Innovation, 2024, 5(1). https://doi.org/10.1016/j.xinn.2023.100537

Welcome!

To request copyright permission to republish or share portions of our works, please visit Copyright Clearance Center's (CCC) Marketplace website at marketplace.copyright.com.

Figures(1)    

Share

  • Share the QR code with wechat scanning code to friends and circle of friends.

Article Metrics

Article views(3736) PDF downloads(1502)

Relative Articles

Cited by

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint