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The impact pressure delivered to the explosive beneath the impacted confinement wall was expected to be maximized when the front cover material had an intermediate elastic impedance value.
An analytical model is proposed to predict the impact pressure.
The impact pressure on the steel is about 3,500 atmospheres.
The effects of grid resolution on body motions and impact pressure are performed for error analysis.
It reveals the critical impact-initiated pressure and critical impact pressure of the maximum reaction efficiency.
The estimated impact pressure is useful for designing the defense structures.
The results obtained in a certain type of impact pressure are compared with the exact ones.
Jet pressure and impact pressure with different ambient pressures at different standoff distances are measured.
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Transition to detonation is achieved with impact pressures that match those found in experiments.
Steep wave impact pressures and the structural dynamic response of FPSO bows are studied using 1 80 scale instrumented models and time domain simulation.
The statistical distribution characteristics of the perpendicular irregular wave impact pressures are compared with that of the oblique irregular wave on the underside of the structure.
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