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Fizika Goreniya i Vzryva, 2007, Volume 43, Issue 4, Pages 90–101 (Mi fgv1517)  

This article is cited in 145 scientific papers (total in 145 papers)

Mathematical modeling of a rotating detonation wave in a hydrogen-oxygen mixture

S. A. Zhdan, F. A. Bykovskii, E. F. Vedernikov

Lavrent’ev Institute of Hydrodynamics, Siberian Division, Russian Academy of Sciences, Novosibirsk, 630090
Citations (145)
Abstract: A two-dimensional unsteady mathematical model of spin detonation in an annular cylindrical ramjet-type combustor is formulated. The wave dynamics in the combustor filled by a hydrogen-oxygen mixture is studied numerically.
Keywords: continuous detonation, combustor, transverse detonation waves, flow structure, mathematical modeling.
Received: 16.04.2006
Accepted: 04.12.2006
English version:
Combustion, Explosion and Shock Waves, 2007, Volume 43, Issue 4, Pages 449–459
DOI: https://doi.org/10.1007/s10573-007-0061-y
Bibliographic databases:
Document Type: Article
UDC: 536.8, 536.46
Language: Russian
Citation: S. A. Zhdan, F. A. Bykovskii, E. F. Vedernikov, “Mathematical modeling of a rotating detonation wave in a hydrogen-oxygen mixture”, Fizika Goreniya i Vzryva, 43:4 (2007), 90–101; Combustion, Explosion and Shock Waves, 43:4 (2007), 449–459
Citation in format AMSBIB
\Bibitem{ZhdBykVed07}
\by S.~A.~Zhdan, F.~A.~Bykovskii, E.~F.~Vedernikov
\paper Mathematical modeling of a rotating detonation wave in a hydrogen-oxygen mixture
\jour Fizika Goreniya i Vzryva
\yr 2007
\vol 43
\issue 4
\pages 90--101
\mathnet{http://mi.mathnet.ru/fgv1517}
\elib{https://elibrary.ru/item.asp?id=16824547}
\transl
\jour Combustion, Explosion and Shock Waves
\yr 2007
\vol 43
\issue 4
\pages 449--459
\crossref{https://doi.org/10.1007/s10573-007-0061-y}
Linking options:
  • https://www.mathnet.ru/eng/fgv1517
  • https://www.mathnet.ru/eng/fgv/v43/i4/p90
  • This publication is cited in the following 145 articles:
    1. Piyush Raj, Ashwin Kumar, Joseph Meadows, “Computational modeling of dynamic injector response in a Rotating Detonation Engine (RDE)”, Applications in Energy and Combustion Science, 21 (2025), 100313  crossref
    2. Ethan W. Plaehn, Allyson L. Haynes, Rohan M. Gejji, Carson D. Slabaugh, “Chamber Length Limits of a Continuously Variable Geometry Rotating Detonation Combustor”, Journal of Propulsion and Power, 2025, 1  crossref
    3. Mathias Ross, Matthew E. Harvazinski, Armani Batista, Matthew Billingsley, Jason R. Burr, Zachary Labry, Liam Mackin, AIAA SCITECH 2025 Forum, 2025  crossref
    4. Yuxiang Lim, Thommie Nilsson, Christer Fureby, AIAA SCITECH 2024 Forum, 2024  crossref
    5. Kevin J. Dille, Mark D. Frederick, Carson D. Slabaugh, Stephen D. Heister, “Rotating detonation combustor performance informed through a novel megahertz-rate stagnation pressure measurement”, Physics of Fluids, 36:2 (2024)  crossref
    6. S. She-Ming Lau-Chapdelaine, Matei I. Radulescu, Zekai Hong, “Quasi-Two-Dimensional Simulation of a Rotating Detonation Engine Combustor and Injector”, Journal of Propulsion and Power, 40:1 (2024), 42  crossref
    7. Yixiang Li, Miao Cheng, Zhaohua Sheng, Yingnan Wang, Xiangyang Liu, Jianping Wang, “Propagation of rotating detonation wave with wall-detached injection in a hollow combustor”, International Journal of Hydrogen Energy, 49 (2024), 1100  crossref
    8. Piyush Raj, Shaon Talukdar, Dalton Langer, Apurav Gupta, Joseph Meadows, Ajay Agrawal, “Validation of Rotating Detonation Combustor Computational Fluid Dynamics Simulations for Predicting Unsteady Supersonic–Subsonic Flow Field at the Exit”, Journal of Engineering for Gas Turbines and Power, 146:4 (2024)  crossref
    9. Minghao Zhao, Hua Qiu, Xinlu He, Zhiyuan Feng, Zhan Yang, Xitao Chen, “Numerical study on the flow characteristics and stability in the isolator of rotating detonation ramjet engine by different combustion modes and structure parameters”, Aerospace Science and Technology, 147 (2024), 108982  crossref
    10. Sergey Martyushov, Exploring the Benefits of Numerical Simulation and Modelling [Working Title], 2024  crossref
    11. P. Raj, J. Meadows, “Influence of fuel inhomogeneity on detonation wave propagation in a rotating detonation combustor”, Shock Waves, 2024  crossref
    12. M. Ross, J. Burr, Y. Desai, A. Batista, C. Lietz, “Flow acceleration in an RDRE with gradual chamber constriction”, Shock Waves, 33:3 (2023), 253  crossref
    13. Lisong Shi, E Fan, Hua Shen, Chih-Yung Wen, Shuai Shang, Hongbo Hu, “Numerical Study of the Effects of Injection Conditions on Rotating Detonation Engine Propulsive Performance”, Aerospace, 10:10 (2023), 879  crossref
    14. A Koichi Hayashi, AIAA SCITECH 2023 Forum, 2023  crossref
    15. Sergey Nicolaevich Martyushov, 11TH INTERNATIONAL CONFERENCE ON MATHEMATICAL MODELING IN PHYSICAL SCIENCES, 2872, 11TH INTERNATIONAL CONFERENCE ON MATHEMATICAL MODELING IN PHYSICAL SCIENCES, 2023, 060017  crossref
    16. Bruno Le Naour, Dmitry Davidenko, Thomas Gaillard, Pierre Vidal, “Rotating detonation combustors for propulsion: Some fundamental, numerical and experimental aspects”, Front. Aerosp. Eng., 2 (2023)  crossref
    17. Da-Wei Zhai, Ning-Bo Zhao, Shan Jin, Xiao-Feng Shao, Hong-Tao Zheng, “Numerical study on the characteristics of rotating detonation wave with multicomponent mixtures”, International Journal of Hydrogen Energy, 48:76 (2023), 29786  crossref
    18. Mengmeng Zhao, Linqing Zhang, Weiye Huo, Hongyu Yang, Yixiang Yuan, “Performance analysis of a rotating detonation model for future thermal power system using hydrogen as fuel”, Energy Reports, 8 (2022), 66  crossref
    19. I. N. Borovik, I. R. Farizanov, L. S. Yanovskii, “Simulation of continuous spin detonation in an annular combustion chamber in two-dimensional statement”, Thermophys. Aeromech., 29:1 (2022), 125  crossref
    20. A Koichi Hayashi, AIAA SCITECH 2022 Forum, 2022  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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