Title :
Experimental and Numerical Studies of Megagauss Magnetic-Field Generation at LANL-NHMFL
Author :
Mielke, Charles H. ; Novac, Bucur Mircea
Author_Institution :
Los Alamos Nat. Lab., NHMFL, Los Alamos, NM, USA
Abstract :
The LANL-NHMFL Megagauss Facility has a well-established history of generating ultrahigh magnetic fields beyond 200 T for a broad range of applications. Using the 2-D Loughborough filamentary modeling, a detailed numerical analysis of the single-turn technique was performed. Single-turn calculations for the standard coil (10 × 10 × 3.2 mm) proved to be extremely accurate up to 40-kV capacitor bank charging, corresponding to a field of 185 T, and also revealed important aspects to be observed during experimentation. For pushing the boundaries toward 500 T, a major effort is under way to perform fast electromagnetic flux compression using a pulsed-power system mainly based on the same capacitor bank. Full details of the design for the new arrangement are given, and based on a well-proven 2-D filamentary modeling, the complex phenomena expected during the flux-compression process are highlighted.
Keywords :
explosions; plasma simulation; spark gaps; 2-D Loughborough filamentary code; LANL-NHMFL megagauss facility; capacitor bank; electromagnetic implosion; fast electromagnetic flux compression; flux-compression process; megagauss magnetic-field generation; numerical analysis; pulsed-power system; spark-gap-switch; ultrahigh magnetic field generation; Magnetic flux compression; numerical modeling; single-turn coil; ultrahigh magnetic fields;
Journal_Title :
Plasma Science, IEEE Transactions on
Conference_Location :
6/14/2010 12:00:00 AM
DOI :
10.1109/TPS.2010.2049507