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Detonation E. O. S. patterns for several explosives (open access)

Detonation E. O. S. patterns for several explosives

The available overdriven shockwave data for a number of explosives have been analyzed and compared. The data follow neither a constant gamma pattern nor the JWL EOS that fits expansion data to high accuracy. Modifications of the JWL function are proposed to correct for discrepancies and also to allow for the appropriate volume dependence of the Grueneisen constant indicated by previous and more recent work. The deviations from the JWL form of the equation of state appear directly above the CJ point for 9404 and PETN while Pentolite and TNT agree with this form over a portion of the Hugoniot. The comparisons with other experiments and a theoretical EOS indicate nonequilibrium behavior.
Date: July 13, 1983
Creator: Green, L.; Lee, E.L.; Mitchell, A.C.; Ree, F.; Tipton, R. & van Thiel, M.
System: The UNT Digital Library
Impact analyses after pipe rupture. [PWR; BWR] (open access)

Impact analyses after pipe rupture. [PWR; BWR]

Two of the French pipe whip experiments are reproduced with the computer code WIPS. The WIPS results are in good agreement with the experimental data and the French computer code TEDEL. This justifies the use of its pipe element in conjunction with its U-bar element in a simplified method of impact analyses.
Date: December 13, 1983
Creator: Chun, R. C. & Chuang, T. Y.
System: The UNT Digital Library
Sensitivity and uncertainty investigations for Hiroshima dose estimates and the applicability of the Little Boy mockup measurements (open access)

Sensitivity and uncertainty investigations for Hiroshima dose estimates and the applicability of the Little Boy mockup measurements

This paper describes sources of uncertainty in the data used for calculating dose estimates for the Hiroshima explosion and details a methodology for systematically obtaining best estimates and reduced uncertainties for the radiation doses received. (ACR)
Date: September 13, 1983
Creator: Bartine, D. E. & Cacuci, D. G.
System: The UNT Digital Library