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Advanced Variants of HTSC Wires for ТRТ Electromagnetic System

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Abstract

The possibility of fabricating winding wires for electromagnetic systems of a tokamak-type reactor using high-temperature superconductors (HTSC) operating at temperatures below 20 K is discussed. The requirements for HTSC wires from the point of view of their use in TRT are given. The properties of modern HTSC tapes manufactured by SuperOx are discussed. Promising options for the fabrication of powerful HTSC conductors for TRT are considered and proposed.

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REFERENCES

  1. J. E. Menard, Philos. Trans. R. Soc., A 377, 20170440 (2019).

  2. A. J. Creely, M. J. Greenwald, S. B. Ballinger, D. Brunner, J. Canik, J. Doody, T. Fulop, D. T. Garnier, R. Granetz, T. K. Gray, C. Holland, N. T. Howard, J. W. Hughes, J. H. Irby, V. A. Izzo, et al., J. Plasma Phys. 86, 865860502 (2020).

  3. A. V. Krasil’nikov, S. V. Konovalov, E. N. Bondarchuk, I. V. Mazul, I. Yu. Rodin, A. B. Mineev, E. G. Kuz’min, A. A. Kavin, D. A. Karpov, V. M. Leonov, R. R. Khairutdinov, A. S. Kukushkin, D. V. Portnov, A. A. Ivanov, Yu. I. Belchenko, et al., Plasma Phys. Rep. 47, 1092 (2021).

  4. E. N. Bondarchuk, A. A. Voronova, S. A. Grigoryev, E. R. Zapretilina, A. A. Kavin, B. A. Kitaev, O. A. Kovalchuk, N. M. Kozhukhovskaya, S. V. Konovalov, A. V. Krasilnikov, A. N. Labusov, I. I. Maksimova, A. B. Mineev, V. P. Muratov, I. Yu. Rodin, et al., Plasma Phys. Rep. 47, 1188 (2021).

  5. P. L. Bruzzone, W. H. Fietz, J. V. Minervini, M. Novikov, N. Yanagi, Y. Zhai, and J. Zheng, Nucl. Fusion 58, 103001 (2018).

  6. H. ten Kate, in International Conference on Magnet Technology ( MT-26), Vancouver, 2019, Report Mo-Mo-PL1-01. https://snf.ieeecsc.org/sites/ieeecsc.org/files/documents/snf/abstracts/RP104-TenKate-Plenary_0.pdf.

  7. Y. Terazaki, N. Yanagi, S. Ito, Y. Seino, S. Hamaguchi, H. Tamura, T. Mito, H. Hashizume, and A. Sagara, IEEE Trans. Appl. Supercond. 25, 4602905 (2015).

  8. M. J. Wolf, W. H. Fietz, C. M. Bayer, S. I. Schlachter, R. Heller, and K.-P. Weiss, IEEE Trans. Appl. Supercond. 26, (2016). https://doi.org/10.1109/TASC.2016.2521323

  9. M. Takayasu, L. Chiesa, L. Bromberg, and J. V. Minervini, Supercond. Sci. Technol. 25, 14011 (2012).

    Article  ADS  Google Scholar 

  10. D. Uglietti, N. Bykovsky, K. Sedlak, B. Stepanov, R. Wesche, and P. Bruzzone, Supercond. Sci. Technol. 28, 124005 (2015).

  11. G. Celentano, G. De Marzi, F. Fabbri, L. Muzzi, G. Tomassetti, A. Anemona, S. Chiarelli, M. Seri, A. Bragagni, and A. della Corte, IEEE Trans. Appl. Supercond. 24, 4601805 (2013). https://doi.org/10.1109/TASC.2013.2287910

  12. D. C. Van der Laan, J. D. Weiss, and D. M. McRae, Supercond. Sci. Technol. 32, 033001 (2019).

  13. J. D. Weiss, T. Mulder, H. J. J. ten Kate, and D. C. van der Laan, Supercond. Sci. Technol. 30, 014002 (2017).

  14. Advanced Conductor Technoligies LLC. https://www.advancedconductor.com/. Cited August 1, 2021.

  15. V. E. Sytnikov, Akad. Energ., No. 6 (44), 72 (2011).

  16. V. S. Vysotsky, S. Yu. Zanegin, V. V. Zubko, and S. S. Fetisov, Kabeli Provoda 5, 374 (2018).

    Google Scholar 

  17. W. Goldacker, R. Nast, and G. Kotzyba, S. I. Schlachter, A. Frank, B. Ringsdorf, C. Schmidt, and P. J. Komarek, J. Phys.: Conf. Ser. 43, 901 (2006).

    ADS  Google Scholar 

  18. N. J. Long, R. A. Badcock, K. Hamilton, A. Wright, Z. Jiang, and L. S. Lakshmi, J. Phys.: Conf. Ser. 234, 022021 (2010).

  19. V. E. Sytnikov and S. A. Lelekhov, Vopr. At. Nauki Tekh., Ser.: Termoyad. Sint. 43 (3), 31 (2020).

    Google Scholar 

  20. S-innovatsiya, Ltd. http://www.s-innovation.ru/. Cited August 1, 2021.

  21. A. Molodyk, S. Samoilenkov, A. Markelov, P. Degtyarenko, S. Lee, V. Petrykin, M. Gaifullin, A. Mankevich, A. Vavilov, B. Sorbom, J. Cheng, S. Garberg, L. Kesler, Z. Hartwig, S. Gavrilkin, et al., Sci. Rep. 11, 2084 (2021).

    Article  Google Scholar 

  22. S. Lelekhov, in Applied Superconductivity Conference (ASC-2014), Charlotte, NC, 2014, Paper ID 1951493.

  23. D. Uglietti, R. Kang, R. Wesche, and F. Grilli, Cryogenics 110, 103118 (2020). https://doi.org/10.1016/j.cryogenics.2020.103118

  24. D. Uglietti, in The 5th Workshop on Accelerator Magnets in HTS (WAMHTS-5), Budapest, 2019, Conference materials. https://indico.cern.ch/event/775529/contributions/3356983/.

  25. P. L. Kalantarov and L. A. Tseitlin, Calculation of Inductances: Handbook (Energoatomizdat, Leningrad, 1986) [in Russian].

    Google Scholar 

  26. S. A. Lelekhov, Vopr. At. Nauki Tekh., Ser.: Termoyad. Sint. 43 (4), 51 (2020).

    Google Scholar 

  27. I. Kesgin, G. Majkic, and V. Selvamanickam, Phys. C 486, 43 (2013).

    Article  ADS  Google Scholar 

  28. S. A. Lelekhov, V. E. Keilin, and B. N. Kolbasov, IEEE Trans. Appl. Supercond. 12, 1561 (2002). https://doi.org/10.1109/TASC.2002.1018701

    Article  ADS  Google Scholar 

  29. R. Kang, D. Uglietti, R. Wesche, K. Sedlak, P. Bruzzone, and Y. Song, IEEE Trans. Appl. Supercond. 30, 5700107 (2020).

  30. Z. S. Hartwig, R. F. Vieira, B. N. Sorbom, R. A. Badcock, M. Bajko, W. K. Beck, B. Castaldo, C. L. Craighill, M. Davies, and J. Estrada, Supercond. Sci. Technol. 33, 11LT01 (2020).

  31. S. S. Fetisov, V. V. Zubko, S. Yu. Zanegin, A. A. Nosov, and V. S. Vysotsky, J. Phys.: Conf. Ser. 1559, 012081 (2020).

  32. S. S. Fetisov, V. V. Zubko, A. A. Nosov, S. Yu. Zanegin, and V. S. Vysotsky, in A Comprehensive Guide to Superconductivity, Ed. by R. Morrow (Nova Science, New York, 2021), Ch. 3.

    Google Scholar 

  33. M. Marchevsky, in Applied Superconductivity Conference (ASC-2020), Virtual conference, 2020, Presentation ID Wk1LOr3B-06.

  34. M. A. Green, IOP Conf. Ser.: Mater. Sci. Eng. 755, 012134 (2020).

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ACKNOWLEDGMENTS

We are sincerely grateful to V.I. Pantsirnyi for the fruitful discussion of various aspects of the work and helpful advice.

Funding

The work was supported by the State Atomic Energy Corporation Rosatom under the contract no. 313/1671-D from September 5, 2019.

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Correspondence to V. E. Sytnikov, S. A. Lelekhov or V. S. Vysotsky.

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Translated by L. Mosina

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Sytnikov, V.E., Lelekhov, S.A., Krasilnikov, A.V. et al. Advanced Variants of HTSC Wires for ТRТ Electromagnetic System. Plasma Phys. Rep. 47, 1204–1219 (2021). https://doi.org/10.1134/S1063780X21110246

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