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A Simulation Study on Plasma Discharge of Microwave Spark Plug

机译:微波火花塞等离子放电仿真研究

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The microwave discharge process is typically a matter of multi-physics field coupling. In this paper, a two-dimensional axisymmetric simulation model of microwave spark plug is established by means of finite element simulation. The starting and developing process of spark plug central conductor tip discharge are simulated, while the distribution of electric field intensity, electron density and He+ density near the tip discharge over time are obtained. The simulation results show that with the progress of discharge, the electric field intensity at the tip of the central conductor is decreasing, and the electron concentration and He+ concentration reach an equilibrium state at 10?5s. This study provides a theoretical reference for understanding the discharge process and effect mechanism of microwave spark plug plasma discharge.
机译:微波放电过程通常是多物理场耦合的问题。本文通过有限元模拟建立了微波火花塞的二维轴对称仿真模型。模拟火花塞中央导体尖端放电的起始和开发过程,同时获得了电场强度的分布,电子密度和He +密度在尖端放电附近的时间。仿真结果表明,随着放电进度,中央导体尖端的电场强度降低,电子浓度和HE +浓度在10时达到平衡状态?5 s。本研究为了解微波火花塞等离子体放电的放电过程和效果机制提供了理论参考。

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