CALCULATION ESTIMATION OF OVERVOLTAGE ON INSULATION OF THE EQUIPMENT OF A SUBSTATION AT THE LIGHTNING STRIKE IN ITS LIGHTNING ARRESTER

IF 1.6 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Electrical Engineering & Electromechanics Pub Date : 2019-06-25 DOI:10.20998/2074-272X.2019.3.11
I. V. Nizhevskyi, V. I. Nizhevskyi
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引用次数: 1

Abstract

Purpose. The complex approach to calculating thunderstorm overvoltage on substation equipment is considered when lightning strikes in a lightning rod. Methodology. The conditions of safe passage of lightning current through a lightning arrester are formulated. Results. It is shown that the calculation of the permissible length of air insulating gaps in the substation is based on the breakdown of the air tension, which is assumed to be 500 kV/m. This leads to an error in calculating the length of the air gap and, as a consequence, the probability of its breakdown, the value of which is used to calculate the indicator of the lightning resistance of the substation. A technique is proposed for calculating the permissible voltage on the transformer case when a lightning strike strikes the lightning receptacle of the transformer portal. On the basis of the nonlinear pulsed electric strength of the ground, the specified minimum permissible ground distance between the grounding rod of the lightning rod and the nearest point of the protected device is obtained. Originality. Refined calculation of the length of the minimum breakdown gap in the air and in the ground. Practical value. The proposed approach makes it possible to calculate thunderstorm overvoltage on substation equipment. References 11, tables 4, figures 6.
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变电站避雷器内雷击时设备绝缘过电压的计算估计
目的。考虑了雷击在避雷针内时变电所设备雷暴过电压的复杂计算方法。方法。给出了雷击电流安全通过避雷器的条件。结果。结果表明,变电站空气绝缘间隙允许长度的计算是基于空气张力的击穿,假设空气张力为500kv /m。这导致在计算气隙长度时出现误差,从而导致气隙击穿的概率出现误差,而气隙击穿的概率值用于计算变电站的防雷指标。提出了一种计算雷电击中变压器入口避雷器时变压器外壳上允许电压的方法。根据接地的非线性脉冲电强度,求得避雷针接地棒与被保护装置最近点之间规定的最小允许接地距离。创意。精细化计算了空中和地面的最小击穿间隙长度。实用价值。该方法使变电所设备的雷暴过电压计算成为可能。参考文献11,表4,图6。
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来源期刊
Electrical Engineering & Electromechanics
Electrical Engineering & Electromechanics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
50.00%
发文量
53
审稿时长
10 weeks
期刊最新文献
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