Abstract.
Two experimental setups are used to study propagation and attenuation of blast waves. In the first one, the blast wave is generated by a spherical detonation, and in the second one, the blast wave is created by the diffraction of a planar detonation propagating in a tube. The similarity of these phenomena appears clearly by means of dimensionless space-time and pressure-space diagrams of shock wave propagation. Dimensionless variables are expressed as a function of the supplied energy. Two energy formulations are proposed: a piston model and a bulk energy model. The established diagrams cover a wide range of industrial applications. Under critical conditions, the energy released by a planar detonation is correlated to the ignition source energy supply and a relationship which links the critical radius of detonation to the critical tube diameter.
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Received 5 July 1997 / Accepted 13 July 1998
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Sochet, I., Lamy, T., Brossard, J. et al. Critical tube diameter for detonation transmission and critical initiation energy of spherical detonation. Shock Waves 9, 113–123 (1999). https://doi.org/10.1007/s001930050146
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DOI: https://doi.org/10.1007/s001930050146