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Methods for Monitoring the Vacuum Seals of Turbine Systems and Vacuum Deaerators

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Power Technology and Engineering Aims and scope

The importance of ensuring the airtightness of vacuum systems in turbine and vacuum aerator systems is pointed out. Highly efficient ways of detecting air infiltration sites in equipment operating under vacuum are developed and tested successfully in industrial operation.

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References

  1. A. D. Trukhnii and B. V. Lomakin, Heating Plant Steam Turbines and Piping: A Textbook for Institutes of Higher Education [in Russian], Izd. MÉI, Moscow (2002).

    Google Scholar 

  2. Yu. M. Brodov, K. E, Aronson, A. Yu. Ryabchikov, and M. S. Nirenshtein, Handbook of Steam Turbine Heat-Exchange Equipment [in Russian], Izd. dom MÉI, Moscow (2008).

  3. Rules for Technical Operation of Electric Power Plants and Grids of the Russian Federation, Approved by Decree No. 229 of June 19, 2003, of the Ministry of Energy of the Russian Federation [in Russian].

  4. RD 34.30.501 (MU 34-70-122–85). Instructions for the Operation of Steam-Turbine Condensation Systems [in Russian], Izd. SPO Soyuztekhenergo, Moscow (1986).

  5. V. A. Permakov, A. S. Gimmel’berg, G. M. Vikhanskii, and Yu. M. Shubnikov (eds.), RTM 34.30.501. Calculation and Design of Thermal Deaerators [in Russian], Izd. NPO TsKTI, Leningrad (1979).

  6. V. I. Sharapov, “Use of oxygen meters for study and operation of thermal power plant equipment,” Énergosber. Vodopodg., No. 5 (2005).

  7. RF Pat. No. 2237814, MPK F 01 K 13/00, V. I. Sharapov and E. V. Makarova, A Way of Operating Thermal Electric Power Plants [in Russian].

  8. RF Pat. No. 2298663, MPK F 01 K 17/02, V. I. Sharapov, E. V. Makarova, and M. A. Malikov, A Way of Operating Thermal Electric Power Plants [in Russian].

  9. RF Pat. No. 2299334, MPK F 01 K 13/00, V. I. Sharapov, E. V. Makarova, and M. A. Malikov, A Way of Operating Thermal Electric Power Plants [in Russian].

  10. RF Pat. No.2309260, MPK F 01 K 13/00, V. I. Sharapov, E. V. Makarova, and M. A. Malikov, A Way of Operating Thermal Electric Power Plants [in Russian].

  11. M. A. Malikov, Increasing the Efficiency of Thermal Power Plants by Improvements in the Operation of Turbine Heat Exchange Equipment. Candidate’s Thesis [in Russian], Izd. KGÉU (2013).

  12. Yu. V. Balaban-Irmenin and N. G. Fokina, “Use of inhibitors to prevent internal corrosion of piping in heat supply systems with a high oxygen content in the mains water,” Novosti Teplosnabzh., No. 9 (2007).

  13. RF Pat. No. 2143401, MPK S 02 F 1/20, V. I. Sharapov, AWay of Operating Vacuum Deaeration Units [in Russian].

  14. RF Pat. No. 2324824, MPK F 01 K 17/02, V. I. Sharapov and M. A. Malikov, AWay of Monitoring the Airtightness of Turbine Vacuum Systems [in Russian].

  15. RF Pat. No. 2324825, MPK F 01 K 17/02, V. I. Sharapov and M. A. Malikov, Thermal Electric Power Plant [in Russian].

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Correspondence to V. I. Sharapov.

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Translated from Élektricheskie Stantsii, No. 5, May 2015, pp. 24 – 27.

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Sharapov, V.I., Zamaleev, M.M. & Kudryavtseva, E.V. Methods for Monitoring the Vacuum Seals of Turbine Systems and Vacuum Deaerators. Power Technol Eng 49, 287–290 (2015). https://doi.org/10.1007/s10749-015-0616-0

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  • DOI: https://doi.org/10.1007/s10749-015-0616-0

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