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Temperature regimes of stabilizer burners under application of thermo-barrier coatings on different parts of their surface

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article contains the results of studies of thermal barrier coatings to improve the reliability and durability of the stabilizer burner devices. Using thermal barrier coatings, flame stabilizer temperature levels should be reduced to the specified allowable values.
Rocznik
Strony
121--124
Opis fizyczny
Bibliogr. 6 poz., rys., wykr.
Twórcy
autor
  • Institute of Engineering Thermophysics, National Academy of Sciences of Ukraine
  • Institute of Engineering Thermophysics, National Academy of Sciences of Ukraine
  • Institute of Engineering Thermophysics, National Academy of Sciences of Ukraine
  • Institute of Engineering Thermophysics, National Academy of Sciences of Ukraine
autor
  • Institute of Engineering Thermophysics, National Academy of Sciences of Ukraine
autor
  • Institute of Engineering Thermophysics, National Academy of Sciences of Ukraine
  • Institute of Engineering Thermophysics, National Academy of Sciences of Ukraine
  • Institute of Engineering Thermophysics, National Academy of Sciences of Ukraine
autor
  • Institute of Engineering Thermophysics, National Academy of Sciences of Ukraine
  • Institute of Engineering Thermophysics, National Academy of Sciences of Ukraine
Bibliografia
  • [1] Fialko N.M., Prokopov V.G., Sherenkovsky Ju.V., Aleshko S.A., Hanzha M.V., Polozenko N.P., Maletskaya O.E., Kutniak O.N., Regragui A., Donchak M.I.: Mathematical modeling of temperature regimes of burners of stabilizer type with thermo-barrier coatings. Technological Systems 2018, 2(38), pp. 41-47.
  • [2] Fialko N.M., Prokopov V.G., Sherenkovskyi Yu.V., Aleshko S.A., Meranova N.O., Yurchuk V.L., Hanzha M.V.: Modeling of heat transfer processes in stabilizer burners with heat-resistant coatings. The development of technical sciences: problems and solutions: Conference Proceedings, April 27-28, 2018 Brno: Baltija Publishing, pp. 189-192.
  • [3] Fialko N.M., Prokopov V.G., Sherenkovsky Ju.V., Meranova N.O., Aleshko S.A., Hanzha M.V., Yurchuk V.L., Shvetsova L.A.: Temperature regimes of the flame stabilizers walls with protective coatings. Industrial Heat Engineering 2017, No. 7, p. 31 (in Russian).
  • [4] Fialko N.M., Prokopov V.G., Sherenkovskii Ju.V., Meranova N.O., Aleshko S.A., Hanzha M.V., Yurchuk V.L., Shvetsova L.A.: Computer simulation of heat transfer processes in microjet burner devices with thermo-barrier coatings. Scientific Bulletin of UNFU 2017, 27 (5), pp. 130-133 (in Ukraine).
  • [5] Fialko N.M., Prokopov V.G., Sherenkovsky Ju.V., Meranova N.O., Aleshko S.A., Hanzha M.V., Yurchuk V.L., Shvetsova L.A.: Heat state of stabilizer burners with protective coatings. Collection of works "Problems of ecology and operation of energy objects”. Institute of Industrial Ecology. Kyiv: IPC ALKON NAS of Ukraine, 2017, pp. 102-105 (in Russian).
  • [6] Kharchenko A.A., Aleshko S.A., Fialko N.M., Prokopov V.G.: The method of step-by-step modeling for solving three-component conjugate problems of heat transfer in cooling systems of burner devices. Theses X Int. science-practice conf. graduate students, masters and students "Modern problems of scientific support of power engineering”, Kyiv, April 17-20, 2012, Vol. 1, p. 136 (in Russian).
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e5b2988e-aa8b-4b91-befa-9807b6affc5c
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