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- W2885292927 abstract "The article refers to the field of supersonic flow control via external energy deposition. Passing astrong shock wave (M=5-6) through the region of pre-formed ionization instability in gas discharge plasma hasbeen studied experimentally and numerically. In the experiments the ionization spherical strata have beenobtained arising in the gas discharge region due to the development of the ionization instability in air. As aresult of the interaction of an initially plane shock wave with the plasma region of ionization instability theformation of new complicated shock-wave configurations was obtained the shape of which changed fromsmooth to gear. These configurations were shown to acquire an unstable character. Numerical simulations werecarried out on the basis of the Euler system of equations with the parameters corresponding to the experimentalconditions with the use of the complex conservative difference schemes. The stratified energy source wasmodelled by a set of thermal layers with varying characteristics. Changes in the physic-chemical properties ofthe medium were described by varying the adiabatic index. Stratified shock-wave structures consisting ofmodified wavy shock-wave and contact discontinuities have been obtained as a result of the interaction of theshock wave with the region of ionization instability. Generation of the Richtmyer-Meshkov instabilities hasbeen obtained on the thermal strata in the vicinity of the shock wave front curvatures which confirmed theunstable character of the shock wave front. Comparison of the obtained experimental and numerical shock frontevolution showed a good agreement. Results of the study can be used to control of high speed flows andshock-wave configurations, as well as mixing processes" @default.
- W2885292927 created "2018-08-22" @default.
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- W2885292927 date "2018-01-01" @default.
- W2885292927 modified "2023-09-27" @default.
- W2885292927 title "Passage of a Shock Wave through the Region of Ionization Instability of Gas Discharge Plasma" @default.
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