Title :
Simulation of ablating wire in wire array Z-pinch
Author :
Kim, Deok-Kyu ; Chittenden, Jeremy P. ; Marocchino, Alberto ; Lebedev, Sergey
Author_Institution :
Technol. Res. Center, Agency for Defense Dev., Daejeon
Abstract :
Summary form only given. Ablation of a wire in the wire-array Z-pinch discharged on MAGPIE has been simulated in a two-dimensional domain of finer grid resolution using a magnetohydrodynamic code, GORGON. For accurate description of ohmic heating at high densities, an electrical conductivity model for nonideal plasma has been incorporated in the code. Emissions of line radiation as well as blackbody radiation are taken into account based on an astrophysical model in order to show the radiation cooling effect. Starting from the wire core assumed as warm dense plasma initially, the expansion and implosion dynamics of coronal plasma are demonstrated and basic plasma parameters are calculated as a function of time. Computed profiles of electron density are compared with data measured by laser interferometer at a certain point of time. The level of electron densities predicted by simulation appears reasonably compatible with measurements despite some discrepancies found in regions away from the initial wire core position. A few physical points are discussed regarding nonideal plasma and radiation emission models.
Keywords :
Z pinch; astrophysical plasma; corona; explosions; plasma density; plasma magnetohydrodynamics; plasma simulation; plasma transport processes; wires (electric); GORGON; MAGPIE; ablating wire; astrophysical model; blackbody radiation; coronal plasma; discharged wire array Z-pinch; electrical conductivity; electron density; finer grid resolution; implosion dynamics; laser interferometer; line radiation emissions; magnetohydrodynamic code; nonideal plasma; ohmic heating; radiation cooling effect; two-dimensional domain; wire core; wire core position; Conductivity; Density measurement; Electrons; Extraterrestrial measurements; Magnetohydrodynamics; Plasma density; Plasma measurements; Plasma simulation; Resistance heating; Wire;
Conference_Titel :
Plasma Science, 2008. ICOPS 2008. IEEE 35th International Conference on
Conference_Location :
Karlsruhe
Print_ISBN :
978-1-4244-1929-6
Electronic_ISBN :
0730-9244
DOI :
10.1109/PLASMA.2008.4591086