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首页> 外文期刊>Russian physics journal >Numerical Calculation of Electrophysical and Thermodynamic Characteristics of Glow Discharge Plasma in Atmospheric Pressure Oxygen Formed After Spark Breakdown
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Numerical Calculation of Electrophysical and Thermodynamic Characteristics of Glow Discharge Plasma in Atmospheric Pressure Oxygen Formed After Spark Breakdown

机译:火花击穿后大气压氧气电神法和热力学特性的数值计算

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The paper presents the results of numerical calculations by finite elements method of the spatiotemporal dynamic of electrophysical and thermodynamic characteristics of atmospheric pressure oxygen plasma after the spark breakdown in the gas-discharge gap of 1 mm. Calculations relied on the use of two-dimensional axially symmetric model of plasma in drift-diffusion approximation, as well as Navier-Stokes and thermal conductivity equations. Discharge characteristics were calculated considering and without considering the plasma heating for various electrical circuit parameters. It was shown that at breakdown voltage of 3500 V and plasma heating, the discharge development leads to formation of the independent stationary discharge of constant current localized in a finite volume. Comparative analysis was done of the impact of electronegative properties of gas and plasma heating on the spatiotemporal dynamic of electrophysical and thermodynamic discharge characteristics.
机译:本文提出了在气体放电间隙1mm的气体放电间隙中的电神法和热动力特性的有限元动力学的数值计算结果的现时性和热力学特性。 依赖于漂移扩散近似中的等离子体二维轴对称模型的计算,以及海军 - 斯托克斯和导热率方程。 考虑和不考虑各种电路参数的等离子体加热来计算放电特性。 结果表明,在3500V和等离子体加热的击穿电压下,放电开发导致形成在有限体积中定位的恒定电流的独立静止排出。 对比较分析是对电神法和热动力放电特性的时空动态的电气和等离子体加热的影响。

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