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ЖУРНАЛЫ // Теплофизика высоких температур

ТВТ, 2005, том 43, выпуск 4, страницы 618–624 (Mi tvt1372)

Акустический метод исследования процесса кипения
Б. М. Дорофеев, В. И. Волкова

Эта публикация цитируется в следующих статьяx:
  1. Sreeram Barathula, Ranjith Kandasamy, Priscilla Jia Yuan Fok, Teck Neng Wong, Kai Choong Leong, K. Srinivasan, “Heat load prediction in flow boiling using boiling-induced vibrations aided with machine learning”, International Journal of Heat and Mass Transfer, 232 (2024), 125890  crossref
  2. Sreeram Barathula, SK Chaitanya, K Srinivasan, “Evaluation of machine learning models in the classification of pool boiling regimes up to critical heat flux based on boiling acoustics”, International Journal of Heat and Mass Transfer, 201 (2023), 123623  crossref
  3. A. N. Pavlenko, “Boiling in High Temperature Publications: from Basic Mechanisms to Development of Flow Control Methods for Enhancement of Heat Transfer”, High Temp, 61:6 (2023), 742  crossref
  4. Delov I M., Litvintsova Yu.E., Kuzmenkov D.M., Laouar S., Maslov Yu.A., Lavrukhin A.A., Balakin V B., Kutsenko V K., “Diagnostics of Transient Heat Transfer Regimes Based on Statistical and Frequency Analysis of Temperature Fluctuations”, Exp. Heat Transf., 33:5 (2020), 471–486  crossref  isi  scopus
  5. Ardid M., Baschirotto A., Burgio N., Corcione M., Cretara L., De Matteis M., Felis I., Frullini M., Manara L., Quintino A., Santagata A., Spena V.A., Vallicelli E.A., Zanotti L., “Effects of the Thermodynamic Conditions on the Acoustic Signature of Bubble Nucleation in Superheated Liquids Used in Dark Matter Search Experiments”, Eur. Phys. J. C, 79:11 (2019), 961  crossref  isi  scopus
  6. Mojskerc B., Kek T., Grum J., “Experimental Characterization of Quenching Bath Contamination Using Acoustic Emission”, J. Nondestruct. Eval., 38:3 (2019), 69  crossref  isi  scopus
  7. Mojskerc B., Grum J., Kek T., “Acoustic Emission Characterisation of Specimen Surface-Area-to-Volume Ratio During Immersion Quenching”, Insight, 61:5 (2019), 257–263  crossref  isi  scopus
  8. Tang J., Xie G., Bao J., Mo Zh., Liu H., Du M., “Experimental Study of Sound Emission in Subcooled Pool Boiling on a Small Heating Surface”, Chem. Eng. Sci., 188 (2018), 179–191  crossref  isi  scopus
  9. Dorofeev B.M. Volkova V.I., International Conference Problems of Thermal Physics and Power Engineering (Ptppe-2017), Journal of Physics Conference Series, 891, IOP Publishing Ltd, 2017  crossref  isi  scopus
  10. B.V. Balakin, M.I. Delov, K.V. Kutsenko, A.A. Lavrukhin, S. Laouar, Yu.E. Litvintsova, A.S. Marchenko, Yu.A. Maslov, “Analyzing temperature fluctuations to predict boiling regime”, Thermal Science and Engineering Progress, 4 (2017), 219  crossref
  11. Nikolai Kobasko, “INVESTIGATION OF TRANSIENT NUCLEATE BOILING PROCESSES AND THEIR PRACTICAL USE IN HEAT TREATING INDUSTRY”, EUREKA: Physics and Engineering, 5 (2017), 39  crossref
  12. Nikolai Kobasko, “INVESTIGATION OF BATCH INTENSIVE QUENCHING PROCESSES WHEN USING HYDRODYNAMIC EMITTERS IN QUENCH TANKS”, EUREKA: Physics and Engineering, 6 (2016), 29  crossref


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