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A Novel Control-rod Drive Mechanism via Electromagnetic Levitation in MNSR Cover

A Novel Control-rod Drive Mechanism via Electromagnetic Levitation in MNSR

Open Access
|Jul 2014

References

  1. 1. Hanliang, B., Wenxiang, Z., & Duo, D. (2000). Studies on the performance of the hydraulic control rod drive for the NHR-200. Nucl. Eng. Des., 195, 117-121.10.1016/S0029-5493(99)00200-9
  2. 2. Yuanqiang, W., Xingzhong, D., Huizhong, Z., & Zhiyong, H. (2002). Design and tests for the HTR-10 control rod system. Nucl. Eng. Des., 218, 147-154.10.1016/S0029-5493(02)00185-1
  3. 3. Takeda, T., & Tachibana, Y. (2003). Indirect air cooling techniques for control rod drives in the high temperature engineering test reactor. Nucl. Eng. Des., 223, 25-40.10.1016/S0029-5493(03)00002-5
  4. 4. Chyou, Y. P., Yu, D. D., & Chen, Y. N. (2004). Performance validation on the prototype of control rod driving mechanism for the TRR-II project. Nucl. Eng. Des., 227, 195-207.10.1016/j.nucengdes.2003.10.004
  5. 5. Mousavi Shirazi, S. A., Aghanajafi, C., Sadoughi, S., & Sharifloo, N. (2010). Design, construction and simulation of a multipurpose system for precision movement of control rods in nuclear reactors. Ann. Nucl. Energy, 37, 1659-1665.10.1016/j.anucene.2010.07.017
  6. 6. Tanaka, A., Futahashi, K., Takanabe, K., Kurimura, C., Kato, J., & Hara, H. (2008). Development of a 3-D simulation analysis system for PWR control rod drive mechanism. Int. J. Pressure Vessels Pip., 85, 655-661.10.1016/j.ijpvp.2008.04.007
  7. 7. International Atomic Energy Agency. (1986). Technology and use of low power research reactors. Vienna: IAEA. (IAEA-TECDOC-384).
  8. 8. Tabadar, Z., Hadad, K., Nematollahi, M. R., Jabbari, M., Khaleghi, M., & Hashemi-Tilehnoee, M. (2012). Simulation of a control rod ejection accident in a VVER-1000/V446 using RELAP5/Mod3.2. Ann. Nucl. Energy, 45, 106-114.10.1016/j.anucene.2012.02.018
  9. 9. Ku, C. L., Li, T. H. S., & Guo, N. R. (2005). Design of a novel fuzzy sliding-mode control for magnetic ball levitation system. J. Intell. Robot. Syst., 42(3), 295-316.10.1007/s10846-004-3026-3
  10. 10. Maghsoudlou, A., Barzamini, R., & Farhani, K. D. (2011). Non-linear control based on feedback linearization for double-electromagnet suspension system. Electron. Electr. Eng., 108(2), 85-90.
  11. 11. Ogata, K. (2010). Modern control engineering (5th ed.). Boston: Prentice-Hall.
DOI: https://doi.org/10.2478/nuka-2014-0008 | Journal eISSN: 1508-5791 | Journal ISSN: 0029-5922
Language: English
Page range: 73 - 79
Submitted on: Dec 17, 2013
Accepted on: Apr 25, 2014
Published on: Jul 8, 2014
Published by: Institute of Nuclear Chemistry and Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2014 Mohammad Divandari, Mehdi Hashemi-Tilehnoee, Masoud Khaleghi, Mohammadreza Hosseinkhah, published by Institute of Nuclear Chemistry and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.