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Semi-Empirical Calculation Method of the Positive First Corona Space Charge Under Different Impulse Rising Rates in Long Air Gaps

机译:长气隙中不同脉冲上升率下第一正电晕空间正电荷的半经验计算方法

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In this paper, the variation of the development of positive first corona space charge in long air gaps is investigated. A 1-m rod-plane air gap under different rising rates $dU/dt$ of impulse voltages is reported. The current signals and still photographs are recorded during the first corona development. The relationship between the first corona charge $Q_{{rm i}}$ and the inception voltage $U_{{rm i}}$ is presented. The physical mechanism of the influence of the first corona is provided. With the experiments and the single branch propagation model, a semi-empirical calcultion method for positive first corona charge under impulse in long air gaps is obtained through the calculation of the number of branches $N_{{rm b}}$. Using this method, the variations between $Q_{{rm i}}$ and $U_{{rm i}}$ for different $dU/dt$ and electric field distributions are calculated and compared with the reported experimental results. Reasonable agreement between the calculated and experimental results is obtained. It shows that this calculation method is suitable for predicting the positive first corona charge $Q_{{rm i}}$ and the discharge current at a given $dU/dt$ and $U_{{rm i}}$.
机译:本文研究了长气隙中正电晕空间正电荷的发展变化。据报道,在不同的上升速率下,一个1-m的杆面气隙>的冲击电压为 。在第一次电晕显影期间会记录当前信号和静态照片。第一个电晕电荷<公式式=“ inline”> $ Q _ {{rm i}} $ 与起始电压<公式式之间的关系“> $ U _ {{rm i}} $ 出现了。提供了第一电晕影响的物理机制。通过实验和单支路传播模型,通过计算支路数,获得了在长气隙脉冲下第一正电晕正电荷的半经验计算方法。<公式式> inline“> $ N _ {{rm b}} $ 。使用此方法, $ Q _ {{rm i}} $ < tex Notation =“ TeX”> $ U _ {{rm i}} $ 用于不同的 $ dU / dt $ $ Q _ {{rm i}} $ 和在给定的 $ dU / dt $ $ U _ {{rm i}} $

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