DocumentCode :
77665
Title :
Calculation of the Equilibrium Evolution of the ZaP Flow Z -Pinch Using a Four-Chord Interferometer
Author :
Knecht, Sean D. ; Golingo, Raymond P. ; Nelson, Brian A. ; Shumlak, Uri
Author_Institution :
Appl. Res. Lab., Pennsylvania State Univ., State College, PA, USA
Volume :
43
Issue :
8
fYear :
2015
fDate :
Aug. 2015
Firstpage :
2469
Lastpage :
2479
Abstract :
A four-chord interferometer and measurements from an array of surface-mounted magnetic probes were used in conjunction with equations of radial heat conduction and radial force balance to calculate the equilibrium evolution of a pinch plasma in the ZaP flow Z-pinch. A multiple shooting method was used to solve the nonlinear coupled differential equation system, with ohmic heating and bremsstrahlung radiation as sources and sinks, respectively. Data from a single ZaP pulse are reported including profiles of magnetic field and temperature and their evolution. Profiles are dominated by high thermal conductivity near the axis which quickly decreases with radius. This is due to the plasma being weakly magnetized near the axis which increases thermal conductivity and flattens the temperature profile, but strongly magnetized near the characteristic radius, significantly reducing thermal conductivity and resulting in a large temperature gradient. The equilibrium evolution indicates that plasmas in ZaP heat and compress with increasing current as a result of magnetic compression during the quiescent period.
Keywords :
Z pinch; heat conduction; plasma magnetohydrodynamics; plasma ohmic heating; plasma probes; thermal conductivity; ZaP flow Z-pinch; bremsstrahlung radiation; equilibrium evolution calculation; four-chord interferometer; magnetic compression; multiple shooting method; nonlinear coupled differential equation system; ohmic heating; pinch plasma; radial force balance equations; radial heat conduction equations; surface-mounted magnetic probe array; temperature gradient; thermal conductivity reduction; weakly magnetized plasma; Conductors; Density measurement; Interferometry; Laser beams; Measurement by laser beam; Plasmas; Probes; $Z$ -pinch; Equilibrium evolution; Z-pinch.; interferometry; pinch oscillation; plasma heating;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2015.2431973
Filename :
7112530
Link To Document :
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