DocumentCode :
3568595
Title :
HEL-1: a DEMG based demonstration of solid liner implosions at 100 MA
Author :
Reinovsky, R.E. ; Anderson, B.G. ; Clark, D.A. ; Ekdahl, C.A. ; Faehl, R.J. ; Goforth, J.H. ; Lindemuth, I.R. ; Petersen, T.L. ; Sheehey, P.T. ; Tabaka, L.J. ; Chernyshev, V.K. ; Mokhov, V.N. ; Buzin, V.N. ; Byrenkov, O.M. ; Bujko, A.M. ; Vakhruchev, V.V.
Author_Institution :
Los Alamos Nat. Lab., NM, USA
Volume :
1
fYear :
1997
Firstpage :
378
Abstract :
In August 1997, the Los Alamos National Laboratory (LANL) and the All-Russian Scientific Research Institute of Experimental Physics (VNIIEF) conducted a joint experiment in Sarov, Russia to demonstrate the feasibility of applying explosive pulsed power technology to implode large scale, high velocity cylindrical liners. Kilogram mass metal liners imploding at velocities of 5-25 km/sec are useful scientific tools for producing high energy density environments, ultra-high pressure shocks and for the rapid compression of plasmas. To explore the issues associated with the design, operation and diagnosis of such implosions, VNIIEF and LANL designed and executed a practical demonstration experiment in which a liner of approximately 1 kg mass was accelerated to 5-10 km/sec while undergoing a convergence of about 4:1. The scientific objectives of the experiment were three-fold: first to explore the limits of very large, explosive, pulse power systems delivering about 100 MA as drivers for accelerating solid density imploding liners to kinetic energies of 25 MJ or greater; second to evaluate the behavior of single material (aluminum) liners imploding at 5-10 km/s velocities by comparing experimental data with 1-D and 2 D numerical simulations; and third, to evaluate the condition of the selected liner at radial convergence of 4 and a final radius of 6 cm. A liner of such parameters could be used as a driver for the equation of state measurements at megabar pressures or as a driver for a future experiment in which a magnetized fusion plasma would be compressed to approach ignition conditions.
Keywords :
explosions; magnetic flux; power supplies to apparatus; pulse generators; pulsed power technology; 1 kg; 100 MA; 25 MJ; 5 to 10 km/s; 5 to 25 km/s; 6 cm; cylindrical liners; demonstration experiment; disk explosive magnetic generator; drivers; energy density environments; explosive pulsed power technology; kinetic energies; numerical simulation; pulsed power supplies; radial convergence; rapid plasma compression; solid liner implosions; ultra-high pressure shocks; Acceleration; Convergence; Electric shock; Explosives; Large-scale systems; Physics; Plasma accelerators; Plasma density; Plasma diagnostics; Plasma measurements;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Pulsed Power Conference, 1997. Digest of Technical Papers. 1997 11th IEEE International
Print_ISBN :
0-7803-4213-5
Type :
conf
DOI :
10.1109/PPC.1997.679360
Filename :
679360
Link To Document :
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