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A Study on Temperature Characteristics of KSTAR PFC and Vacuum Vessel at Baking Phase

KSTAR PFC와 진공용기의 가열탈리 단계에서의 온도특성에 관한 연구

  • Received : 2014.12.16
  • Accepted : 2015.01.27
  • Published : 2015.03.10

Abstract

To create an ultra-high vacuum state at the KSTAR, the temperature of plasma facing component and vacuum vessel should be maintained at $300^{\circ}C$ and $110^{\circ}C$ respectively at a baking phase. The purpose of this research is obtaining the target baking temperatures. Experiments were performed to investigate the temperature characteristics of PFC and VV at the baking phase. Thermal network analysis was used to find heat transfer rates among PFC, VV and other components, and this analysis was verified by using the experimental data. The required heating energy of the PFC and the heating and cooling energy of the VV for the target baking temperatures were found to be 346 kW, 28 kW, and 136 kW, respectively.

Keywords

References

  1. Lee, K. H., Im, K. H., Cho, S. Y., Kim, J. B., and Woo, H. K., 2000, The baking analysis for vacuun vessel and plasma facing components of the KSTAR tokamak, Proceedings of the KSME '2000 Fall Annual Conference, pp. 247-254.
  2. IN, S. R., Yoon, B. J., and Cho, S. Y., 1998, Thermal stress analysis of the KSTAR vacuum vessel during bakeouts, Journal of the Korea Vacuum Society, Vol. 7, No. 4, pp. 285-292.
  3. Lee, K. H., Im, K. H., Her, N. I., IN, S. R., and Cho, S. Y., 1999, Baking analysis of the KSTAR vacuum vessel and plasma facing components, Journal of the Korea Vacuum Society, Vol. 8, No. 4(1), pp. 397-402.
  4. Park, J. S., 2002, Korea superconducting tokamak advanced research project, development of tokamak structure and vacuum systems, report of KBSI, RP 17-2-1.
  5. Bang, E. B., Kim, K. M., Kim, H. T., and Kim, H. K., 2010, Design feature and result of PFCs baking system for the KSTAR, Transactions of the Korean Nuclear Society Autumn Meeting, pp. 21-22.
  6. Kim, K. M., Bang, E. B., Kim, H. T., Kim, H. K., Lee, K. S., Yang, H. L., Kwon, M., and Yoo, S. Y., 2011, The KSTAR plasma facing components for 2010 operation, Fusion Science and Technology, Vol. 86, Issue 9-11, pp. 1693-1696.
  7. Kim, S. T., Kim, Y. J., Im, D. S., Jung, N. Y., Kim, Y. S., and Yoo, S. Y., 2012, Design and operation results of nitrogen gas baking system for KSTAR plasma facing components, Fusion Engineering and Design, Vol. 88, Issue 11, pp. 2967-2971. https://doi.org/10.1016/j.fusengdes.2013.06.007
  8. Kim, Y. J., Kim, S. T., Im, D. S., Jung, N. Y., Kim, Y. S., and Yoo, S. Y., 2012, Design and performance verification of KSTAR cooling water system, Fusion Science and Technology, Vol. 64, No. 2, pp. 357-361.
  9. Yoo, S. Y., Kim, K. H., Kim, B. C., Kim, C. N., Lee, J. B., and Cho, H. H., 2012, Heat and mass transfer, fundamentals and applications, 4th ed., McGraw-Hill Korea, Seoul, pp. 673-781.

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