Title :
MHRDR modeling of z-pinches at the Nevada Terawatt Facility
Author :
Makhin, Vladimir ; Bauer, B.S. ; Sotnikov, V.I. ; Shlyaptseva, A. ; Galloudec, N.L. ; Paraschiv, Ion ; Angelova, M. ; Lindemuth, I.R. ; Sheehey, P.T.
Author_Institution :
Nevada Univ., Reno, NV, USA
Abstract :
Summary form only given, as follows. 1D modeling of the initial state of wire explosions ("cold start" with updated SESAME tables) was examined using a 1D version of the Eulerian magnetohydrodynamic radiative code (MHRDR). Simulations were carried out for two regimes: with (black body radiative model) and without radiative losses. The results of the simulations revealed strong dependence of the time of explosion and expansion speed of the wire on the implemented radiative model. This shows that it is necessary to accurately include radiative losses to model "cold start" wire explosions. Comparison with the Imperial College (UK) computational results are also presented. 2D modeling of the m=0 sausage instability with sheared axial flow are given. The MHRDR simulations were used to obtain the growth rate of the m=0 sausage instability in a plasma column with an initial Bennett equilibrium profile with and without shear flow. These growth rates appeared to be in good agreement with growth rates calculated from the linearized MHD equations 2D modeling of single wire z-pinches with a "warm start". MHRDR simulation results are being compared with X-ray measurements of Ti, Fe, and other single wire z-pinches.
Keywords :
Z pinch; blackbody radiation; exploding wires; losses; plasma magnetohydrodynamics; plasma simulation; plasma transport processes; sausage instability; 1D modeling; 2D modeling; Eulerian magnetohydrodynamic radiative code; Fe; Imperial College computational results; MHRDR modeling; Nevada Terawatt Facility; Ti; X-ray measurements; black body radiative model; cold start; cold start wire explosions; expansion speed; explosion; growth rate; growth rates; implemented radiative model; initial Bennett equilibrium profile; linearized MHD equations; m=0 sausage instability; plasma column; radiative losses; sausage instability; shear flow; sheared axial flow; simulations; single wire z-pinches; updated SESAME tables; warm start; wire explosions; z-pinches; Computational modeling; Educational institutions; Equations; Explosions; Iron; Magnetohydrodynamics; Plasma measurements; Plasma simulation; Plasma x-ray sources; Wire;
Conference_Titel :
Pulsed Power Plasma Science, 2001. IEEE Conference Record - Abstracts
Conference_Location :
Las Vegas, NV, USA
Print_ISBN :
0-7803-7141-0
DOI :
10.1109/PPPS.2001.961285