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Effects of Impulse Voltage Polarity, Peak Amplitude, and Rise Time on Streamers Initiated From a Needle Electrode in Transformer Oil

机译:脉冲电压极性,峰值幅度和上升时间对变压器油中针电极引发的拖缆的影响

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摘要

An electrothermal hydrodynamic model is presented to evaluate effects of the applied lightning impulse voltage parameters such as polarity, magnitude, and rise time on the initiation and propagation of the streamers formed in an IEC defined needle-sphere electrode geometry filled with transformer oil. Instantaneous velocity, column diameter, head curvature, maximum electric field, and the volume charge density have been investigated as the main characteristics of the streamer. Modeling results indicate that greater applied voltage peak amplitudes form streamers with higher velocity, greater head curvatures, and thicker columns. The bushy negative streamers usually initiate at almost twice the applied voltage magnitude and propagate slower than filamentary positive streamers. Results also show that in transformer oil at the same impulse voltage peak amplitude, shorter rise times create thicker positive and negative streamers.
机译:提出了一个电热流体动力学模型,以评估施加的雷电冲击电压参数(例如极性,大小和上升时间)对以IEC定义的​​填充有变压器油的针状球形电极几何形状形成的拖缆的启动和传播的影响。瞬时速度,色谱柱直径,水头曲率,最大电场和体积电荷密度已被研究为拖缆的主要特征。建模结果表明,更大的施加电压峰值幅度会形成具有更高速度,更大曲率和更大柱厚的拖缆。浓密的负极拖缆通常在施加电压幅值的两倍时启动,并且传播速度比丝状正极拖缆慢。结果还表明,在相同的脉冲电压峰值幅度下的变压器油中,较短的上升时间会产生较厚的正负流形。

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