Tendency of spherically imploding plasma liners formed by merging plasma jets to evolve toward spherical symmetry
arXiv:1201.1879 · doi:10.1063/1.4714606
Abstract
Three dimensional hydrodynamic simulations have been performed using smoothed particle hydrodynamics (SPH) in order to study the effects of discrete jets on the processes of plasma liner formation, implosion on vacuum, and expansion. The pressure history of the inner portion of the liner was qualitatively and quantitatively similar from peak compression through the complete stagnation of the liner among simulation results from two one dimensional radiationhydrodynamic codes, 3D SPH with a uniform liner, and 3D SPH with 30 discrete plasma jets. Two dimensional slices of the pressure show that the discrete jet SPH case evolves towards a profile that is almost indistinguishable from the SPH case with a uniform liner, showing that non-uniformities due to discrete jets are smeared out by late stages of the implosion. Liner formation and implosion on vacuum was also shown to be robust to Rayleigh-Taylor instability growth. Interparticle mixing for a liner imploding on vacuum was investigated. The mixing rate was very small until after peak compression for the 30 jet simulation.
28 pages, 16 figures, submitted to Physics of Plasmas (2012)
References in corpus (2)
Cited by in corpus (12)
- Experimental characterization of railgun-driven supersonic plasma jets motivated by high energy density physics applications
- Experimental characterization of the stagnation layer between two obliquely merging supersonic plasma jets
- Experimental evidence for collisional shock formation via two obliquely merging supersonic plasma jets
- Experiment to Form and Characterize a Section of a Spherically Imploding Plasma Liner
- Ideal hydrodynamic scaling relations for a stagnated imploding spherical plasma liner formed by an array of merging plasma jets
- Possible Energy Gain for a Plasma Liner-Driven Magneto-Inertial Fusion Concept
- Magnetized Plasma Target for Plasma-Jet-Driven Magneto-Inertial Fusion
- One-dimensional radiation-hydrodynamic simulations of imploding spherical plasma liners with detailed equation-of-state modeling
- Experimental characterization of a section of a spherically imploding plasma liner formed by merging hypersonic plasma jets
- Semi-analytic model of plasma-jet-driven magneto-inertial fusion
- Physics Criteria for a Subscale Plasma Liner Experiment
- On Stability of Targets for Plasma Jet Induced Magnetoinertial Fusion