Mildenhall: Multi-mission Task Force by David Davies

By David Davies

DET four AND THE SR-71;
10TH ACCS;
RC-135S;
EUROPEAN TANKER job FORCE;
BRAVO SQUADRON;
HEAVY LIFTERS C-5;

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L. A. Journal 10, 514–516 (1972). 6. Bernard Hayes, “Electrical Measurements in Reaction Zones of High Explosives”, Tenth Symposium (International) on Combustion 869–874 (1965). 7. Bobby G. Craig, private communication. 8. B. G. Craig, “Measurements of the Detonation-Front Structure in Condensed-Phase Explosives”, Tenth Symposium (International) on Combustion 863–867 (1965). © 2008 by Taylor & Francis Group, LLC 30 chapter one: The Detonation Wave 9. Charles L. Mader and James D. Kershner, “Three-Dimensional Modeling of Explosive Desensitization by Preshocking”, Journal of Energetic Materials 3, 35–47 (1985).

At the bottom of the grid was a reaction zone piston, which was programmed to initialize the flow with a steady-state reaction zone. After the steady-state reaction zone had traveled one reaction zone length in solid PBX-9404, it interacted with a two percent by volume HCP (hexagonal closed packed) matrix of air holes. 012 cm, occupy a region in the middle of the mesh about 25 cells high. Partial air spheres occur on the boundaries as necessary. The air hole size was chosen to be representative of the actual hole size present in pressed PBX-9404.

Expt’l. Ref. 37 © 2008 by Taylor & Francis Group, LLC 47 C-J Param. Expt’l. Ref. BKW BKW RDX Param. TNT Param. 01 48 chapter two: Performance of Explosives and Propellants Explosive C-J Param. Expt’l. Ref. BKW BKW RDX Param. TNT Param. 1 Steady State Detonations Explosive 49 C-J Param. Expt’l. Ref. BKW BKW RDX Param. TNT Param. 53 C6 H10 N4 O11 S Eo = -136. 8169 Eo = -182. 88 50 Explosive chapter two: Performance of Explosives and Propellants C-J Param. Expt’l. Ref. BKW BKW RDX Param. TNT Param.

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