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Modeling enhanced blast explosives using a multiphase mixture approach

  • Sandia National Laboratories, New Mexico

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

5 Scopus citations

Abstract

In this overview we present a reactive multiphase flow model to describe the physical processes associated with enhanced blast. This model is incorporated into CTH, a shock physics code, using a variant of the Baer and Nunziato nonequilibrium multiphase mixture to describe shock-driven reactive flow including the effects of interphase mass exchange, particulate drag, heat transfer and secondary combustion of multiphase mixtures. This approach is applied to address the various aspects of the reactive behavior of enhanced blast including detonation and the subsequent expansion of reactive products. The latter stage of reactive explosion involves shock-driven multiphase flow that produces instabilities which are the prelude to the generation of turbulence and subsequent mixing of surrounding air to cause secondary combustion. Turbulent flow is modeled in the context of Large Eddy Simulation (LES) with the formalism of multiphase PDF theory including a mechanistic model of metal combustion.

Original languageEnglish
Title of host publicationFluid Structure Interaction and Moving Boundary Problems
PublisherWITPress
Pages393-401
Number of pages9
ISBN (Print)1845640276, 9781845640279
StatePublished - 2005
Event3rd International Conference on Fluid Structure Interaction and 8th International Conference on Computational Modelling and Experimental Measurements of Free and Moving Boundaries - La Coruna, Spain
Duration: Sep 21 2005Sep 23 2005

Publication series

NameWIT Transactions on the Built Environment
Volume84
ISSN (Print)1743-3509

Conference

Conference3rd International Conference on Fluid Structure Interaction and 8th International Conference on Computational Modelling and Experimental Measurements of Free and Moving Boundaries
Country/TerritorySpain
CityLa Coruna
Period09/21/0509/23/05

Keywords

  • Blast waves
  • Combustion
  • Shock physics
  • Two-phase flow

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