Title :
Electrical Design and Operation of the Phelix Pulsed Power System
Author :
Reass, William A. ; Baca, David M. ; Griego, Jeffrey R. ; Oro, David M. ; Reinovsky, Robert E. ; Rousculp, Christopher L. ; Turchi, Peter J.
Author_Institution :
Los Alamos Nat. Lab., Los Alamos, NM, USA
Abstract :
The Precision High Energy-Density Liner Implosion Experiment (PHELIX) is a pulsed power driver capable of delivering multimegampere currents to cylindrical loads. The PHELIX hardware includes novel design features to provide a high-energy conversion efficiency of approximately 10-MA output current per megajoule of stored energy. This is achieved by a rail-gap switched low-inductance Marx design (resistively damped) driving a multifilar air-core pulse transformer. The Marx output cables form the toroidal transformer that is an integral part of the disc line and removable load cassette assembly. The transformer and disc line uses conformal insulation methods and does not require replacement; after each shot, the transformer is completely reusable. Load cassettes can be easily exchanged to facilitate experimental variation. PHELIX is selfcontained within its own transport container and Faraday cage that can be moved from the maintenance building to the Los Alamos Neutron Science Center 800-MeV proton accelerator facility to perform multipulse proton radiography. This paper details the electrical and mechanical design of the Marx and multifilar transformer assemblies as well as presenting the operational performance achieved to date.
Keywords :
driver circuits; insulation; proton accelerators; pulse generators; pulse transformers; pulsed power supplies; radiography; Faraday cage; Los Alamos Neutron Science Center; Marx design; Marx output cables; Marx transformer; PHELIX hardware; conformal insulation; cylindrical loads; disc line; electrical design; electron volt energy 800 MeV; high-energy conversion efficiency; maintenance building; mechanical design; multifilar air-core pulse transformer; multifilar transformer; multimegampere currents; multipulse proton radiography; phelix pulsed power system; precision high energy-density liner implosion experiment; proton accelerator facility; pulsed power driver; rail-gap switched low-inductance; removable load cassette assembly; toroidal transformer; transport container; Assembly; Capacitors; Hydrodynamics; Inductance; Power transformer insulation; Pulse transformers; Resistors; Hydrodynamics; marx banks; pulse transformer; pulsed power;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2014.2326335