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Testing of current dispersal regularity of common tower grounding devices

机译:测试普通塔式接地装置的电流扩散规律

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The impulse current dispersion of the tower grounding system will affect the impulse grounding resistance of the grounding device, according to the grounding device characteristics of the impulse current dispersion to design and optimize the structure of grounding system can improve the grounding effect. Using the field tests of equal scale reduced model, the variation law of impulse current dispersion is analyzed from the common tower grounding system. The experimental results show that when the total volume of materials is fixed, the smaller the grounding device radius is, the larger the surface area of the dispersion is, and the smaller the power frequency ground resistance is. Normally, the impact factor of the grounding device is less than 1, because of the spark corona effect of the grounding device under the high frequency impact within 30 kHz, the inductance effect is much larger than the impedance effect, the impact resistance is too small. With the increase of soil resistivity value, the grounding impedance reflected by impact characteristics is obviously increased. The law of impulse current dispersion caused by simulation test is helpful to improve the effect of grounding device.
机译:塔式接地系统的脉冲电流色散会影响接地装置的脉冲接地电阻,根据接地装置的脉冲电流色散特性来设计和优化接地系统的结构可以提高接地效果。使用等比例缩减模型的现场测试,从普通塔架接地系统分析了脉冲电流色散的变化规律。实验结果表明,当材料的总体积固定时,接地装置的半径越小,分散体的表面积越大,工频接地电阻越小。正常情况下,接地装置的冲击系数小于1,由于接地装置在30 kHz以内的高频冲击下的火花电晕效应,电感效应远大于阻抗效应,抗冲击力太小。随着土壤电阻率值的增加,冲击特性所反映的接地阻抗明显增加。模拟测试引起的脉冲电流色散规律有助于提高接地装置的效果。

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