312
Views
16
CrossRef citations to date
0
Altmetric
Original Articles

Three-Dimensional Numerical Study of Flow Particle Paths in Rotating Detonation Engine with a Hollow Combustor

, , , &
Pages 965-979 | Received 08 Feb 2015, Accepted 22 Nov 2016, Published online: 25 Feb 2017

References

  • Balsara, D.S., and Shu, C. 2000. Monotonicity preserving weighted essentially non-oscillatory schemes with increasingly high order of accuracy. J. Comput. Phys., 160, 405–452.
  • Bykovskii, F.A., Zhdan, S.A., and Vedernikov, E.F. 2006. Continuous spin detonation. J. Propul. Power, 22, 1204–1216.
  • Davidenko, D.M., Gokalp, I., and Kudryavtsev, A.N. 2008. Numerical study of the continuous detonation wave rocket engine. Presented at the 15th AIAA International Space Planes and Hypersonic Systems and Technologies Conference, Dayton, OH, April 28–May 1.
  • Falempin, F., and Naour, B.L. 2009. R&T effort on pulsed and continuous detonation wave engines.Presented at the 16th AIAA/DLR/DGLR International Space Planes and Hypersonic Systems and Technologies Conference, Bremen, Germany, October 19–22.
  • Fotia, M.L., Hoke, J., and Schauer, F. 2015. Experimental study of performances scaling in rotating detonation engines operated on hydrogen and gaseous hydrocarbon fuel. Presented at the 20th AIAA International Space Planes and Hypersonic Systems and Technologies Conference, Glasgow, Scotland, July 6–9.
  • Frolov, S.M., Aksenov, V.S., Ivanov, V.S., and Shamshin, I.O. 2015. Large-scale hydrogen-air continuous detonation combustor. Int. J. Hydrogen Energy, 40, 1616–1623.
  • Frolov, S.M., Dubrovskii, A.V., and Ivanov, V.S. 2012. Three-dimensional numerical simulation of the operation of the rotating-detonation chamber. Russ. J. Phys. Chem. B, 6, 276–288.
  • Gamezo, V.N., Desbordes, D., and Oran, E.S. 1999. Formation and evolution of two-dimensional cellular detonations. Combust. Flame, 116, 154–165.
  • Hishida, M., Fujiwara, T., and Wolanski, P. 2009. Fundamentals of rotating detonation. Shock Waves, 19, 1–10.
  • Ishihara, K., Kato, Y., Matsuoka, K., Kasahara, J., Matsuo, A., and Funaki, I. 2015. Thrust performance evaluation of a rotating detonation engine with a conical plug. Presented at the 25th International Colloquium on the Dynamics of Explosions and Reactive Systems, Leeds, England, August 2–7.
  • Kailasanath, K. 2000. Review of propulsion applications of detonation waves. AIAA J., 38, 1698–1708.
  • Kindracki, J., Wolanski, P., and Gut, Z. 2011. Experimental research on the rotating detonation in gaseous fuels–oxygen mixtures. Shock Waves, 21, 75–87.
  • Lee, J.H.S. 1984. Dynamic parameters of gaseous detonations. Ann. Rev. Fluid Mech., 16, 311–336.
  • Lin, W., Zhou, J., Liu, S., and Lin, Z. 2015. An experimental study on CH4/O2 continuously rotating detonation wave in a hollow combustion chamber. Exp. Therm. Fluid Sci., 62, 122–130.
  • Liu, M., Zhou, R., and Wang, J.P. 2015a. Numerical investigation of different injection patterns in rotating detonation engines. Combust. Sci. Technol., 187, 343–361.
  • Liu, S.J., Lin, Z.Y., Liu, W.D., Lin, W., and Zhuang, F.C. 2012. Experimental realization of H2/air continuous rotating detonation in a cylindrical combustor. Combust. Sci. Technol., 184, 1302–1317.
  • Liu, Y.S., Wang, Y.H., Li, Y.S., Li, Y., and Wang, J.P. 2015b. Spectral analysis and self-adjusting mechanism for oscillation phenomenon in hydrogen-oxygen continuously rotating detonation engine. Chin. J. Aeronaut., 28, 669–675.
  • Lu, F.K., and Braun, E.M. 2014. Rotating detonation wave propulsion: Experimental challenges, modeling, and engine concepts. J. Propul. Power, 30, 1125–1142.
  • Ma, F., Choi, J.Y., and Yang, V. 2006. Propulsive performance of air breathing pulse detonation engines. J. Propul. Power, 22, 1188–1203.
  • Oran, E.S., Weber, Jr., J.W., Stefaniw, E.I., Lefebvre, M.H., and Anderson,Jr., J.D. 1998. A numerical study of a two-dimensional H2-O2-Ar detonation using a detailed chemical reaction model. Combust. Flame, 113, 147–163.
  • Schwer, D., and Kailasanath, K. 2011. Numerical investigation of the physics of rotating-detonation-engines. Proc. Combust. Inst., 33, 2195–2202.
  • Shao, Y.T., Liu, M., and Wang, J.P. 2010. Numerical investigation of rotating detonation engine propulsive performance. Combust. Sci. Technol., 182, 1586–1597.
  • Shao, Y.T., and Wang, J.P. 2011. Three-dimensional simulation of rotating detonation engine without inner wall. Presented at the 23rd International Colloquium on the Dynamics of Explosions and Reactive Systems, Irvine, CA, July 24–29.
  • Tang, X.M., Wang, J.P., and Shao, Y.T. 2015. Three-dimensional numerical investigations of the rotating detonation engine with a hollow combustor. Combust. Flame, 162, 997–1008.
  • Uemura, Y., Hayashi, A.K., Asahara, M., Tsuboi, N., and Yamada, E. 2013. Transverse wave generation mechanism in rotating detonation. Proc. Combust. Inst., 34, 1981–1989.
  • Voitsekhovskii, B.V. 1959. Stationary spin detonation. Dokl. Akad. Nauk SSSR, 129, 1254–1256.
  • Wu, D., Zhou, R., Liu, M., and Wang, J.P. 2014. Numerical investigation of the stability of rotating detonation engines. Combust. Sci. Technol., 186, 1699–1715.
  • Yi, T.H., Lou, J., Turangan, C., Choi, J.Y., and Wolanski, P. 2011. Propulsive performance of a continuously rotating detonation engine. J. Propul. Power, 27, 171–181.
  • Zhdan, S.A., Bykovskii, F.A., and Vedernikov, E.F. 2007. Mathematical modeling of a rotating detonation wave in a hydrogen–oxygen mixture. Combust. Explos. Shock Waves, 43, 449–459.
  • Zhou, R., and Wang, J.P. 2012. Numerical investigation of flow particle paths and thermodynamic performance of continuously rotating detonation engines. Combust. Flame, 159, 3632–3645.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.