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Researches on Spectrums and Macroscopic Forms of DC Arc in a Short Air Gap

机译:短气隙直流电弧的频谱和宏观形态研究

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Arc accidents may cause serious problems in power grid. Yet, the progress of arc evolution is very complicated and rapidly changed, which can be easily disturbed by external factors. Here, in order to better describe DC arc mechanism and exclude external influence factors, a testing platform, which can produce a small DC arc in the condition of gap length less than 15 mm and current less than 60 mA, was built. Arc evolution and macroscopic forms were captured by a high-speed camera. Spectrums of various states of arc were measured by a multichannel spectrometer and the arc temperatures were calculated based on the spectral lines. The relationships between DC arc resistance and gap length and current were studied. The experimental results show that DC arc develops from the positive electrode rather than negative electrode. With the current increasing, the macroscopic forms of arc evolution progress are mainly consisted of 4 periods: spark, purple-arc, yellow-arc and flame-arc. The arc spectrogram reflects that the wavelengths of 4 maximum relative intensities are 315.86 nm, 337.107 nm, 357.65 nm and 391.42 nm, respectively. The relationship between arc resistance and current is a power function, while it is a linear function of gap length. The work in this paper is helpful to understand the progress of DC arc evolution.
机译:电弧事故可能会在电网中造成严重问题。然而,电弧演变的过程非常复杂且变化迅速,很容易受到外部因素的干扰。在这里,为了更好地描述直流电弧机理并排除外部影响因素,建立了一个在间隙长度小于15mm和电流小于60mA的条件下可以产生小的直流电弧的测试平台。弧形演变和宏观形式是由高速相机捕获的。用多通道光谱仪测量各种电弧状态的光谱,并根据谱线计算电弧温度。研究了直流电弧电阻与间隙长度和电流之间的关系。实验结果表明,直流电弧是从正极而不是负极产生的。随着电流的增加,电弧演化过程的宏观形式主要由四个时期组成:火花,紫色弧,黄色弧和火焰弧。电弧光谱图反映出四个最大相对强度的波长分别为315.86 nm,337.107 nm,357.65 nm和391.42 nm。电弧电阻和电流之间的关系是幂函数,而它是间隙长度的线性函数。本文的工作有助于理解直流电弧发展的进展。

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