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首页> 外文期刊>IEEE Transactions on Plasma Science >Numerical Simulation of the Characteristics of Heavy Particles in Bar-Plate DC Positive Corona Discharge Based on a Hybrid Model
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Numerical Simulation of the Characteristics of Heavy Particles in Bar-Plate DC Positive Corona Discharge Based on a Hybrid Model

机译:基于混合模型的棒板直流正电晕放电中重粒子特征的数值模拟

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摘要

An improved, multicomponent, and 2-D hybrid model is presented in detail for the simulation of bar-plate dc corona discharge in dry air $({rm O}_{2}:{rm N}_{2}=1:4)$. The model is based on plasma hydrodynamics, and chemical models in which 12 species (e, O, ${rm O}_{2}$ , ${rm O}_{3}$, ${rm O}_{2}^{+}$, ${rm O}_{4}^{+}$, ${rm O}_{2}^{-}$, ${rm O}^{-}$, ${rm N}_{2}$, ${rm N}_{2}^{+}$, ${rm N}_{4}^{+}$, and ${rm N}_{2}~{rm O}_{2}^{+}$) and 32 collision reactions between such species are considered. In addition, the photoionization and secondary electron emission effects are also incorporated within the model. The simulation is established with a bar-plate electrode configuration with an interelectrode gap of 5.0 mm, where the positive dc voltage applied to the bar is 3.0 kV, the pressure in air discharge is fixed at 1.0 atm, and the gas temperature is assumed to be a constant (300 K). Using individual discharge current waveform and $V-I$ curve, the effectiveness of this developed model is validated by experimental results. With this hybrid model, electric field distribution and net space charge distribution at four representative time points during a pulse are discussed. Moreov- r, the composition and distribution of particles are analyzed emphatically. The obtained results show that, among all reactions, the reaction rate of ${rm R}_{1}$, which is the collision reaction between electron and ${rm N}_{2}$ is maximal, whereas the ${rm N}_{2}^{+}$ density is significantly less than ${rm O}_{4}^{+}$ and ${rm O}_{2}^{+}$. ${rm O}_{2}^{-}$ has the largest number of negative ions and thus restrains the electron collision process significantly. In addition to ${rm N}_{2}$ and ${rm O}_{2}$, O is the major neutral particle, but owing to the small quantity of neutral particles, the effect is relatively weak. The obtained results will provide valuable insights into the physical mechanism of positive corona discharge in air.
机译:详细介绍了一种改进的多分量二维混合模型,用于模拟干燥空气中条形板直流电晕放电$({rm O} _ {2}:{rm N} _ {2} = 1: 4)$。该模型基于等离子体流体动力学和化学模型,其中12种物质(e,O,$ {rm O} _ {2} $,$ {rm O} _ {3} $,$ {rm O} _ {2 } ^ {+} $,$ {rm O} _ {4} ^ {+} $,$ {rm O} _ {2} ^ {-} $,$ {rm O} ^ {-} $,$ { rm N} _ {2} $,$ {rm N} _ {2} ^ {+} $,$ {rm N} _ {4} ^ {+} $和$ {rm N} _ {2}〜 {rm O} _ {2} ^ {+} $)和此类物种之间的32个碰撞反应。此外,光电离和二次电子发射效应也被纳入模型中。通过电极间距为5.0 mm的条板电极配置建立模拟,其中施加到条上的正DC电压为3.0 kV,排气中的压力固定为1.0 atm,并且假定气体温度为为常数(300 K)。使用单独的放电电流波形和$ V-I $曲线,通过实验结果验证了该开发模型的有效性。使用此混合模型,讨论了脉冲期间四个代表性时间点的电场分布和净空间电荷分布。此外,着重分析了颗粒的组成和分布。所得结果表明,在所有反应中,反应速率为$ {rm R} _ {1} $,这是电子与$ {rm N} _ {2} $之间的碰撞反应,而$ { rm N} _ {2} ^ {+} $密度显着小于$ {rm O} _ {4} ^ {+} $和$ {rm O} _ {2} ^ {+} $。 $ {rm O} _ {2} ^ {-} $具有最大数量的负离子,因此显着抑制了电子碰撞过程。除了$ {rm N} _ {2} $和$ {rm O} _ {2} $外,O是主要的中性粒子,但是由于中性粒子的数量少,效果相对较弱。获得的结果将为空气中正电晕放电的物理机制提供有价值的见解。

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