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V. Zhakhovskii

Publications and source records attributed to V. Zhakhovskii.

2 recordsLinked to original sources

Molecular Dynamics Simulation on Stability of Converging Shocks

Molecular Dynamic (MD) approach is applied to study the converging cylindrical shock waves in a dense Lennard-Jones (LJ) fluid. MD method is based on tracking of the atom motions and hence it has an fundamental advantages over hydrodynamic methods which assumes shocks as a structureless discontinuity and requires an equation of state. Due to the small thickness of shock fronts in liquid the two million particles is enough to simulate propagation of a cylindrical shocks in close detail. We investigate stability of converging shocks with different perturbation modes and its mixture. It was shown that in a case of relatively large initial ripples the Mach stems are formed. Supersonic jets generated by interaction of reflected shocks in downstream flow are observed. We also study the Richtmyer-Meshkov (RM) instability of an interface between two Lennard-Jones liquids of different mass densities. Surprisingly, mode 3 ripples grow very slow in comparison with higher mode numbers and growth rate of a higher mode decay slower.

physics.comp-ph↗

Self-consistent Monte-Carlo simulation of the positive column in Argon

A high accurate self-consistent Monte-Carlo method including charged and neutral particle motion and resonance photon transport is developed and applied to simulation of positive column discharge in Argon. The distribution of power loss across the tube is investigated. It is shown that negative slope of current-voltage gradient curve can not be explained by only one factor. Diffusion of metastable atoms to the tube wall in the case of low current ($0.2-3$mA) responds for the most part of negative slope. For the high currents the variation of radiation power loss makes a main contribution to the amplitude of negative slope.

physics.plasm-ph↗