Efficiency of steam generation in hydrogen-oxygen steam generator of kilowatt power class

 
PIIS004036440003574-5-1
DOI10.31857/S004036440003574-5
Publication type Article
Status Published
Authors
Affiliation: Joint Institute for High Temperatures RAS
Address: Russian Federation
Affiliation: Joint Institute for High Temperatures RAS
Address: Russian Federation
Journal nameTeplofizika vysokikh temperatur
EditionVolume 56 Issue 6
Pages946-952
Abstract

  

Keywords
AcknowledgmentThis work was supported by the Russian Science Foundation (agreement No. 14–50–00124).
Received28.12.2018
Publication date28.12.2018
Cite   Download pdf To download PDF you should sign in
Размещенный ниже текст является ознакомительной версией и может не соответствовать печатной

views: 1075

Readers community rating: votes 0

1. Shpil'rajn Eh. Eh., Malyshenko S. P. Nekotorye aspekty razvitiya vodorodnoj ehnergetiki i tekhnologii // Teploehnergetika. 1980. № 3: S. 8.

2. Malyshenko S. L., Nazarova O. B., Sarumov Yu. A. Termodinamicheskie aspekty ispol'zovaniya vodoroda dlya resheniya nekotorykh zadach ehnergetiki // Teploehnergetika. 1986. № 10. S. 43.

3. Gorlov A. M. Hydrogen as an Activating Fuel for a Tidal Power Plant // Int. J. Hydrogen Energy. 1981. V. 6. № 3. P. 243.

4. Sternfeld H. J., Heinrich P. A Demonstration Plant for the Hydrogen/Oxygen Spinning Reserve // Int. J. Hydrogen Energy. 1989. V. 14. № 10. P. 703.

5. Bebelin I. N., Volkov A. G., Gryaznov A. N., Malyshenko S. P. Razrabotka i issledovanie ehksperimental'nogo vodorodo-kislorodnogo parogeneratora moschnost'yu 10 MVt(t) // Teploehnergetika. 1997. № 8. S. 48.

6. Haidn O. J., Frohlke K., Carl J., Weingartner S. Improved Combustion Efficiency of a H2O2 Steam Generator for Spinning Reserve Application // Int. J. Hydrogen Energy. 1998. V. 23. № 6. R. 491.

7. Hijikata T. Research and Development of International Clean Energy Network Using Hydrogen Energy (WENET) // Int. J. Hydrogen Energy. 2002. V. 27. № 2. P. 115.

8. Malyshenko S. P., Gryaznov A. N., Filatov N. I. High-Pressure H2/O2-Steam Generators and their Possible Applications // Int. J. Hydrogen Energy. 2004. V. 29. № 6. P. 589.

9. Shapiro V. I., Malyshenko S. P., Reutov B. F. Povyshenie manevrennosti PGU pri ispol'zovanii vodorodno-kislorodnykh parogeneratorov // Teploehnergetika. 2011. № 9. S. 35.

10. Malyshenko S. P., Schastlivtsev A. I. Analiz sistemy vodorodnogo akkumulirovaniya ehlektroehnergii v sravnenii s drugimi sistemami akkumulirovaniya // TVT. 2015. T. 53. № 4. S. 538.

11. Cicconardi S. P., Perna A., Spazzafumo G. Steam PowerPlants Fed by High Pressure Electrolytic Hydrogen // Int. J. Hydrogen Energy. 2004. V. 29. № 5. R. 547.

12. Frohlke K., Haidn O. J. Spinning Reserve System Based on H2/O2 Combustion // Energy Convers. Manage. 1997. V. 38. № 10. R. 983.

13. Schastlivtsev A. I., Nazarova O. V. Vodorodno-vozdushnaya gazoturbinnaya sistema akkumulirovaniya ehnergii // Teploehnergetika. 2016. № 2. S. 31.

14. Malyshenko S. P., Schastlivtsev A. I. Termodinamicheskaya ehffektivnost' geotermal'nykh stantsij s vodorodnym peregrevom para // Teploehnergetika. 2010. № 11. S. 23.

15. Sternfeld H. J., Paulus M. Hydrogen/Oxygen Steam Generators for Sterilization Processes and Chemical Engineering // Int. J. Hydrogen Energy. 1993. V. 18. № 11. R. 945.

16. Betelin V. B., Shagaliev R. M., Aksenov S. V. et al. Mathematical Simulation of Hydrogen–Oxygen Combustion in Rocket Engines Using LOGOS Code // Acta Astronautica. 2014. № 96. R. 53.

17. Smirnov N. N., Nikitin V. F. Modeling and Simulation of Hydrogen Combustion in Engines // Int. J. Hydrogen Energy. 2014. V. 39. № 2. R. 1122.

18. Jin P., Li M., Cai G. Experimental Study of Hydrogen-Rich/Oxygen-Rich Gas–Gas Injectors // Chin. J. Aeronaut. 2013. V. 26. № 5. R. 1164.

19. Lux J., Suslov D., Haidn O. On Porous Liquid Propellant Rocket Engine Injectors // Aerosp. Sci. Technol. 2008. V. 12. № 6. R. 469.

20. Hashimoto T., Koyama K., Yamagishi M. Hydrogen Combustion Characteristics in a Model Burner with a Coaxial Injector // Int. J. Hydrogen Energy. 1998. V. 23. № 8. R. 713.

21. Malyshenko S. P., Prigozhin V. I., Savich A. R., Schastlivtsev A. I., Il'ichev V. A., Nazarova O. V. Ehffektivnost' generatsii para v vodorodokislorodnykh parogeneratorakh megavattnogo klassa moschnosti // TVT. 2012. T. 50. № 6. S. 820.

22. Frolov S. M., Aksenov V. S., Ivanov V. S. Experimental Proof of Zel’dovich Cycle Efficiency Gain over Cycle with Constant Pressure Combustion for Hydrogen–Oxygen Fuel Mixture // Int. J. Hydrogen Energy. 2015. V. 40. № 21. R. 6970.

23. Sohn C. H., Chung S. H., Lee S. R., Kim J. S. Structure and Acoustic-Pressure Response of Hydrogen–Oxygen Diffusion Flames at High Pressure // Combust. Flame. 1998. V. 115. № 3. R. 299.

24. Blair L. S., Getzinger R. W. A Shock Tube Study of Recombination in the Hydrogen-Oxygen Reaction Using Infrared Emission from Water Vapor // Combust. Flame. 1970. V. 14. № 1. R. 5.

25. Lede J., Lapicque F., Villermaux J. Production of Hydrogen by Direct Thermal Decomposition of Water // Int. J. Hydrogen Energy. 1983. V. 8. № 9. R. 675.

26. Il'ichev V. A., Prigozhin V. I., Savich A. R., Sviridov O. P., Malyshenko S. P., Nazarova O. V., Schastlivtsev A. I. Razrabotka vysokotemperaturnogo vodorodnogo miniparoperegrevatelya // Teplovye protsessy v tekhnike. 2011. № 11. S. 517.

27. Dobrovol'skij M. V. Zhidkostnye raketnye dvigateli. Osnovy proektirovaniya. Ucheb. dlya vuzov / Pod red. Yagodnikova D. A. M.: Izd-vo MGTU im. N. Eh. Baumana, 2005. 488 s.

Система Orphus

Loading...
Up