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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >A semi-analytical study of positive corona discharge in wire-plane electrode configuration
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A semi-analytical study of positive corona discharge in wire-plane electrode configuration

机译:线平面电极结构中正电晕放电的半分析研究

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Wire-to-plane positive corona discharge in air has been studied using an analytical model of two species (electrons and positive ions). The spatial distributions of electric field and charged species are obtained by integrating Gauss's law and the continuity equations of species along the Laplacian field lines. The experimental values of corona current intensity and applied voltage, together with Warburg's law, have been used to formulate the boundary condition for the electron density on the corona wire. To test the accuracy of the model, the approximate electric field distribution has been compared with the exact numerical solution obtained from a finite element analysis. A parametrical study of wire-to-plane corona discharge has then been undertaken using the approximate semi-analytical solutions. Thus, the spatial distributions of electric field and charged particles have been computed for different values of the gas pressure, wire radius and electrode separation. Also, the two dimensional distribution of ozone density has been obtained using a simplified plasma chemistry model. The approximate semi-analytical solutions can be evaluated in a negligible computational time, yet provide precise estimates of corona discharge variables.
机译:使用两种物质(电子和正离子)的分析模型研究了空气中的线对平面正电晕放电。电场和带电物质的空间分布是通过将高斯定律和沿拉普拉斯电场线的物质连续性方程相结合而获得的。电晕电流强度和施加电压的实验值,以及沃伯格定律,已被用来制定电晕线上电子密度的边界条件。为了测试模型的准确性,已将近似的电场分布与有限元分析获得的精确数值解进行了比较。然后,使用近似半解析解对线对面电晕放电进行了参数研究。因此,对于气体压力,导线半径和电极间距的不同值,已经计算出电场和带电粒子的空间分布。而且,已经使用简化的等离子体化学模型获得了臭氧密度的二维分布。可以在可忽略的计算时间内评估近似的半解析解,但仍可以精确估算电晕放电变量。

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