DocumentCode :
3545503
Title :
PPPS-2013: Addressing short trapped-flux lifetime in high-density field-reversed configuration plasmas in FRCHX
Author :
Grabowski, C. ; Degnan, James H. ; Amdahl, David J. ; Domonkos, M. ; Ruden, Edward L. ; White, William ; Wurden, G.A. ; Intrator, T.P. ; Waganaar, W.J. ; Weber, Thomas ; Frese, Michael H. ; Frese, Sherry D. ; Camacho, J. Frank ; Coffey, Sean K. ; Kiuttu,
Author_Institution :
Directed Energy Directorate, Air Force Res. Lab., Kirtland AFB, NM, USA
fYear :
2013
fDate :
16-21 June 2013
Firstpage :
1
Lastpage :
1
Abstract :
Summary form only given. The objective of the Field-Reversed Configuration Heating Experiment (FRCHX) is to obtain a better understanding of the fundamental scientific issues associated with high energy density plasmas (HEDPs) in strong, closed-field-line magnetic fields. These issues have relevance to such topics as magneto-inertial fusion (MIF), laboratory astrophysical research, and intense radiation sources, among others. To create the HEDP, a field-reversed configuration (FRC) plasma of moderate density is first formed via reversed-field theta pinch. It is then translated into a cylindrical aluminum shell (solid liner), where it is trapped between two magnetic mirrors and then compressed by the magnetically-driven implosion of the shell. A requirement is that once the FRC is stopped within the shell, the trapped flux inside the FRC must persist while the compression process is completed. With the present shell dimensions and drive bank parameters, the total time required for implosion is ~25 microseconds. Lifetime measurements of recent FRCHX FRCs indicate trapped lifetimes now approaching ~14 microseconds, and with recent experimental modifications the liner compression can be initiated considerably earlier before formation is completed in order to close that gap further. A discussion of FRC lifetime-limiting mechanisms will be presented along with a description of FRCHX and recent changes that have been made to it. Results from recent experiments aimed at lengthening FRC lifetime will also be presented.
Keywords :
aluminium; explosions; magnetic mirrors; plasma density; plasma heating; reversed field pinch; Al; FRC lifetime-limiting mechanisms; FRCHX; closed-field-line magnetic fields; compression process; cylindrical aluminum shell; drive bank parameters; field-reversed configuration heating experiment; high energy density plasmas; high-density field-reversed configuration plasmas; intense radiation sources; laboratory astrophysical research; lifetime measurements; liner compression; magnetic mirrors; magnetically-driven implosion; magneto-inertial fusion; reversed-field theta pinch; shell dimensions; short trapped-flux lifetime; Aluminum; Educational institutions; Heating; Laboratories; Magnetic fields; Magnetic flux; Plasmas;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plasma Science (ICOPS), 2013 Abstracts IEEE International Conference on
Conference_Location :
San Francisco, CA
ISSN :
0730-9244
Type :
conf
DOI :
10.1109/PLASMA.2013.6633342
Filename :
6633342
Link To Document :
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