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Simulation of shock-initiated ignition

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Publication:358570
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DOI10.1007/S00193-010-0255-1zbMath1272.76311OpenAlexW1983661573WikidataQ60028607 ScholiaQ60028607MaRDI QIDQ358570

N. Rezaeyan, M. Lopez-Aoyagi, J. Melguizo-Gavilanes, Luc Bauwens

Publication date: 9 August 2013

Published in: Shock Waves (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1007/s00193-010-0255-1


zbMATH Keywords

ignitiondetonation


Mathematics Subject Classification ID

Shock waves and blast waves in fluid mechanics (76L05) Reaction effects in flows (76V05) Basic methods in fluid mechanics (76M99)





Cites Work

  • Shock-generated ignition: the induction zone
  • Oscillating flames: multiple-scale analysis
  • On the nonlinear stability and detonability limit of a detonation wave for a model three-step chain-branching reaction
  • High resolution numerical simulation of ideal and non-ideal compressible reacting flows with embedded internal boundaries
  • Unsteady Gasdynamic Evolution of an Induction Domain Between a Contact Surface and a Shock Wave. I: Thermal Runaway
  • Ignition of thermally sensitive explosives between a contact surface and a shock
  • Cell structure and stability of detonations with a pressure-dependent chain-branching reaction rate model




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