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Original Articles

Precursors in two-phase detonation: An elementary model for the channel effect

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Pages 117-147 | Received 05 Jul 2013, Accepted 11 Nov 2013, Published online: 31 Jan 2014

References

  • M.A. Cook, The Science of High Explosives, Reinhold, New York, 1958.
  • D.W. Woodhead, Velocity of detonation of a tubular charge of explosive, Nature 160 (1947), p. 644.
  • D.W. Woodhead, Advance detonation in a tubular charge of explosive, Nature 183 (1959), pp. 1756–1757.
  • D.W. Woodhead and H. Titman, Detonation phenomena in a tubular charge of explosive, Explosivstoffe 13 (1965), pp. 113–123, 141–155.
  • L.E. Fugelso, J.N. Albright, G.C. Langer, and K.L. Burns, A hypervelocity projectile launcher for well perforation, Int. J. Impact. Engng. 10 (1990), pp. 171–184.
  • I. Brailovsky and G. Sivashinsky, Detonation-propelled shocks in tubular charges as a two-phase problem, Comptes Rendus Mecanique 340 (2012), pp. 900–909.
  • A.K. Kapila, R. Menikoff, J.B. Bdzil, S.F. Son, and D.S. Stewart, Two-phase modeling of deflagration-to-detonation transition in granular materials: Reduced equations, Phys. Fluids 13 (2001), pp. 3002–3024.
  • R.L. Spaulding, Precursors in porous explosives, 7th Symp. (Int.) on Detonation, Annapolis, 1981, NSWC MP 82-334, pp. 877–886.
  • C.O. Leiber, Assessment of Safety and Risk with Microscopic Model of Detonation, Elsevier, Amsterdam, 2003.
  • W. Fickett, Detonation in miniature, Am. J. Phys. 47 (1979), pp. 1050–1059.
  • R.L. Rabie, G.R. Fowles, and W. Fickett, The polymorphic detonation, Phys. Fluids 22 (1979), pp. 422–435.
  • B. Riemann, Über die Fortpflanzung ebener Luftwellen von endlicher Schwingungstweite, Gött. Abh. Math. Cl. 8 (1860), pp. 43–65.
  • D.W. Schwendeman, C.W. Wahle, and A.K. Kapila, A study of detonation evolution and structure for a model of compressible two-phase reactive flow, Combust. Theory Model. 12 (2008), pp. 159–204.
  • C.H. Johansson and P.A. Persson, Detonics of High Explosives, Academic Press, London, 1970.
  • V. Tanguay and A.J. Higgins, The high-explosive channel effect: Influence of boundary layers on the precursor shock wave in air. J. Appl. Phys. 95 (2004), pp. 6159–6166.
  • V. Tanguay and A.J. Higgins, The channel effect: Coupling of the detonation and the precursor shock wave by precompression of the explosive, J. Appl. Phys. 96 (2004), pp. 4894–4902.
  • V. Tanguay, P. Vu, P.J. Oliver, E. Timofeev, and A.J. Higgins, Effect of fill pressure on the precursor shock in the channel effect. 43rd AIAA Aerospace Sciences Meeting and Exhibit, Reno, NV, 10–13 January 2005. AIAA Paper 2005–0278.
  • P. Vu, H.W. Leung, V. Tanguay, R. Tahir, E. Timofeev, and A. Higgins, Numerical and theoretical analysis of the pressure shock wave formation at high-explosive channel detonation. Shock Waves: 26th International Symposium on Shock Waves, Vol. 1, K. Hannerman and F. Seller, eds., Springer, 2009, pp. 311–316.
  • A.B. Wenzel, A review of explosive accelerations for hypervelocity impact, Int. J. Impact Engng. 5 (1987), pp. 681–692.
  • D. Szirti, J. Loiseau, A. Higgins, and V. Tanguay, Dynamics of explosively imploded pressurized tubes, J. Appl. Phys. 109 (2011), Paper No. 084526. Available at http://dx.doi.org/10.1063/1.3567919.

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