Two-dimensional implosion simulations with a kinetic particle code.
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Summary
This work performs two-dimensional implosion simulations using a Monte Carlo kinetic particle code and finds good agreement with hydrodynamic studies regarding the location of the shock and the implosion dynamics, but differences are found in the evolution of fluid instabilities.
- Type
- article
- Published
- 2016-11-14
- Cited by
- 5
- References
- 74
- Access
- Open access
- OpenAlex
- https://openalex.org/W28618628
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1872414
Keywords
Humanities, Art
References
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- Basic hydrodynamics of Richtmyer–Meshkov-type growth and oscillations in the inertial confinement fusion-relevant conditions
- Taylor instability in shock acceleration of compressible fluids
- Species separation in inertial confinement fusion fuels
- The Statistical Mechanical Theory of Transport Processes. IV. The Equations of Hydrodynamics
- The Boltzmann equation at the borderline. A decade of Monte Carlo simulations of a quantum kinetic equation
- The Distribution of Molecular Velocities and the Mean Motion in a Non-Uniform Gas
- Molecular gas dynamics observations of Chapman-Enskog behavior and departures there from in nonequilibrium gases.
- On Elephant-Trunk Structures in the Region of O Associations.
Cited by
- Generalized Noh self-similar solutions of the compressible Euler equations for hydrocode verification
- Spin depolarization induced by self-generated magnetic fields during cylindrical implosions.
- Plasma transport simulations of Rayleigh–Taylor instability in near-ICF deceleration regimes
- Simulation and assessment of material mixing in an indirect-drive implosion with a hybrid fluid-PIC code
- Shock waves at final stages of cavity collapse in non-homogeneous liquid with divergenceless flow
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