Measurement of Ion Flow Fields Generated by Positive DC Corona Discharge based on E-FISH

Shen Chen, Jiangong Zhang, Hengxin He, Junru Che, Wanxia Zhang, L. Nie, Weijiang Chen
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Abstract

To accurately measure the ion flow field of atmospheric DC corona discharges is important for optimizing the electromagnetic environment of HVDC overhead transmission lines. Since the distribution of ion flow field may be distorted by the inserting of electric field sensor, existing methods are inadequate for the measurement of electric field generated by corona discharges. In this paper, a non-invasive method based on the electric field induced second harmonic effect (E-FISH) is developed to measure the ion flow field produced by positive dc corona discharges and compare with numerical simulations. Firstly, an electric field measurement system is established according to the principle of E-FISH. Secondly, a calibration procedure for the measurement of non-uniform electric field is proposed by adopting FEM simulation under corona free condition. Finally, the electric field generated by positive DC corona discharge in a rod-plate air gap is measured quantitatively and compared with the results obtained by numerical simulations. The experimental results are in good agreement with the numerical simulation results of corona ion flow field in the rod-plate air gap, which verifies the applicability and accuracy of this method. By comparing experimental results with computational ones, it is demonstrated that the E-FISH method has the potential to be applied in the ion flow field measurement of HVDC transmission lines.
基于E-FISH的直流正电晕放电离子流场测量
准确测量大气直流电晕放电的离子流场对优化高压直流架空输电线路的电磁环境具有重要意义。由于电场传感器的插入会使离子流场的分布发生畸变,现有的方法对于电晕放电产生的电场的测量是不够的。本文提出了一种基于电场感应二次谐波效应(E-FISH)的非侵入式直流正电晕放电离子流场测量方法,并与数值模拟结果进行了比较。首先,根据E-FISH原理建立了电场测量系统。其次,采用无电晕条件下的有限元模拟,提出了非均匀电场测量的标定方法。最后,定量测量了直流正电晕放电在棒板气隙中产生的电场,并与数值模拟结果进行了比较。实验结果与杆板气隙内电晕离子流场的数值模拟结果吻合较好,验证了该方法的适用性和准确性。将实验结果与计算结果进行比较,证明了E-FISH方法在高压直流输电线路离子流场测量中具有应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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