Loading [MathJax]/jax/output/SVG/config.js
Fizika Goreniya i Vzryva
RUS  ENG    JOURNALS   PEOPLE   ORGANISATIONS   CONFERENCES   SEMINARS   VIDEO LIBRARY   PACKAGE AMSBIB  
General information
Latest issue
Archive

Search papers
Search references

RSS
Latest issue
Current issues
Archive issues
What is RSS



Fizika Goreniya i Vzryva:
Year:
Volume:
Issue:
Page:
Find






Personal entry:
Login:
Password:
Save password
Enter
Forgotten password?
Register


Fizika Goreniya i Vzryva, 2011, Volume 47, Issue 4, Pages 109–118 (Mi fgv1117)  

This article is cited in 18 scientific papers (total in 18 papers)

Detonation of a coal-air mixture with addition of hydrogen in plane-radial vortex chambers

F. A. Bykovskiia, S. A. Zhdana, E. F. Vedernikova, Yu. A. Zholobovb

a Lavrent’ev Institute of Hydrodynamics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, 630090, Russia
b Novosibirsk State University, Novosibirsk, 630090, Russia
Citations (18)
Abstract: Results of an experimental study of continuous and pulsed detonation of a coal-air mixture with addition of hydrogen in plane-radial vortex chambers 204 and 500 mm in diameter are presented. The tested substance is pulverized activated charcoal. A method of coal powder supply through narrow channels by means of adding the gas at the injector entrance is found. Stable regimes of continuous spin detonation with one or two transverse detonation waves moving with velocities of 1.8–1.6 km/sec are obtained for the first time in the combustor 204 mm in diameter. The frequency of pulsed detonation with radial waves is 4–4.8 kHz. The limits of continuous detonation in the combustor 500 mm in diameter are extended: regimes of continuous spin detonation with a large number (5–8) of transverse waves moving with velocities of 1.8–1.5 km/sec are obtained, the amount of hydrogen added to coal is reduced to 2.8%, and combustion of coarser fuel particles is ensured owing to an increased residence time of the mixture in the combustor. The wave structure and the flow in the vicinity of the waves are reconstructed in the combustor plane.
Keywords: coal-air mixture, continuous spin detonation, pulsed detonation, plane-radial chamber, flow structure.
Received: 01.06.2010
Accepted: 24.11.2010
English version:
Combustion, Explosion and Shock Waves, 2011, Volume 47, Issue 4, Pages 473–482
DOI: https://doi.org/10.1134/S0010508211040113
Bibliographic databases:
Document Type: Article
UDC: 534.2, 546.2
Language: Russian
Citation: F. A. Bykovskii, S. A. Zhdan, E. F. Vedernikov, Yu. A. Zholobov, “Detonation of a coal-air mixture with addition of hydrogen in plane-radial vortex chambers”, Fizika Goreniya i Vzryva, 47:4 (2011), 109–118; Combustion, Explosion and Shock Waves, 47:4 (2011), 473–482
Citation in format AMSBIB
\Bibitem{BykZhdVed11}
\by F.~A.~Bykovskii, S.~A.~Zhdan, E.~F.~Vedernikov, Yu.~A.~Zholobov
\paper Detonation of a coal-air mixture with addition of hydrogen in plane-radial vortex chambers
\jour Fizika Goreniya i Vzryva
\yr 2011
\vol 47
\issue 4
\pages 109--118
\mathnet{http://mi.mathnet.ru/fgv1117}
\elib{https://elibrary.ru/item.asp?id=16986596}
\transl
\jour Combustion, Explosion and Shock Waves
\yr 2011
\vol 47
\issue 4
\pages 473--482
\crossref{https://doi.org/10.1134/S0010508211040113}
Linking options:
  • https://www.mathnet.ru/eng/fgv1117
  • https://www.mathnet.ru/eng/fgv/v47/i4/p109
  • This publication is cited in the following 18 articles:
    1. Jing Guo, Shirong Ge, “Preliminary study on the explosive performance of coal dust and prospects for engineering applications”, Sci Rep, 15:1 (2025)  crossref
    2. Jianing Jing, Hu Ma, “An experimental study on gas-solid two-phase rotating detonation ramjet engine based on aluminum powder fuel”, J. Phys.: Conf. Ser., 2764:1 (2024), 012032  crossref
    3. Jing Guo, Shirong Ge, Ruibo Yang, Jiayu Liang, Yinan Guo, “Pressure Characteristics and Secondary Ignition Effects of Gas Produced in RDE Using Lignite and Anthracite/CH4 Fuel”, ACS Omega, 2024  crossref
    4. F. A. Bykovskii, S. A. Zhdan, E. F. Vedernikov, “Detonation burning of a kerosene–air mixture in a radial vortex chamber with geometry variations at the entrance and exit”, Combustion, Explosion and Shock Waves, 60:2 (2024), 193–205  mathnet  crossref  crossref  elib
    5. Juntang Zhang, Shangpeng Li, Shengnan Li, Huangwei Zhang, “Autoignition of premixed hydrogen/air mixtures with uniformly dispersed carbon particles”, International Journal of Hydrogen Energy, 92 (2024), 453  crossref
    6. Zhenjuan Xia, Hu Ma, Gaoyang Ge, Yong He, Changsheng Zhou, “Effect of Combustor Outlet Geometry on Operating Characteristics of Disk-Shaped Rotating Detonation Engine”, Aerospace, 10:8 (2023), 732  crossref
    7. “Effects of different physical properties of anthracite powder fuel on detonation characteristics of a rotating detonation engine”, Physics of Fluids, 35:5 (2023)  crossref
    8. Marc Salvadori, Achyut Panchal, Devesh Ranjan, Suresh Menon, AIAA SCITECH 2022 Forum, 2022  crossref
    9. Zhenjuan Xia, Cuizhen Zhang, Fengming Wang, Yong He, Hu Ma, Gaoyang Ge, Changsheng Zhou, “Propagation characteristics of hydrogen-air rotating detonation wave in disk-shaped combustors with different configurations”, Aerospace Science and Technology, 130 (2022), 107806  crossref
    10. Han Xu, Xiaodong Ni, Xiaojie Su, Bowen Xiao, Yongchen Luo, Feng Zhang, Chunsheng Weng, Quan Zheng, “Experimental investigation on the application of the coal powder as fuel in a rotating detonation combustor”, Applied Thermal Engineering, 213 (2022), 118642  crossref
    11. Zhenjuan Xia, Hu Ma, Yong He, Gaoyang Ge, Changsheng Zhou, “Visual experimental research on the propagation instabilities in a plane-radial rotating detonation engine”, Aerospace Science and Technology, 122 (2022), 107335  crossref
    12. Zhenjuan Xia, Hu Ma, Gaoyang Ge, Changsheng Zhou, “Effects of ignition condition on the initiation characteristics of rotating detonation wave in plane-radial structure”, Acta Astronautica, 175 (2020), 79  crossref
    13. Long Liu, Zhi-Xun Xia, Li-Ya Huang, Li-Kun Ma, Bin-Bin Chen, “Numerical investigation of one-dimensional unsteady detonation wave characteristics of magnesium particle-air mixture”, Acta Phys. Sin., 69:19 (2020), 194701  crossref
    14. Marc Salvadori, Ian B. Dunn, Jonathan Sosa, Suresh Menon, Kareem A. Ahmed, AIAA Scitech 2020 Forum, 2020  crossref
    15. Zhenjuan Xia, Hu Ma, Chuan Liu, Changfei Zhuo, Changsheng Zhou, “Experimental investigation on the propagation mode of rotating detonation wave in plane-radial combustor”, Experimental Thermal and Fluid Science, 103 (2019), 364  crossref
    16. Zhenjuan Xia, Hu Ma, Changfei Zhuo, Changsheng Zhou, “Propagation characteristics of rotating detonation wave in plane–radial structure with different pressure conditions”, Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering, 233:7 (2019), 2378  crossref
    17. Long Liu, Zhi-Xun Xia, Li-Ya Huang, Li-Kun Ma, Xu-Dong Na, “Numerical investigation of one-dimensional steady detonation wave characteristics for magnesium particle-air mixture”, Acta Phys. Sin., 68:24 (2019), 244701  crossref
    18. Zhenjuan Xia, Hu Ma, Changfei Zhuo, Changsheng Zhou, “Propagation process of H2/air rotating detonation wave and influence factors in plane-radial structure”, International Journal of Hydrogen Energy, 43:9 (2018), 4609  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
    Fizika Goreniya i Vzryva Fizika Goreniya i Vzryva
    Statistics & downloads:
    Abstract page:76
     
      Contact us:
     Terms of Use  Registration to the website  Logotypes © Steklov Mathematical Institute RAS, 2025