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Investigations of Partial Discharge Characteristics of Moving Metal Particles in Transformer Oil Flow under AC Voltage

机译:交流电压下变压器油流中运动金属颗粒的局部放电特性研究

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Metal particles in transformer oil can seriously deteriorate the internal insulation states of power transformer via partial discharge (PD) and may ultimately lead to transformer failures. The moving metal particles within the transformer oil duct under the force of a submerged pump may have significantly different PD characteristics compared to free particles in static transformer oil. In order to investigate the PD characteristics, this study analyzed and simulated the forces and trajectories of the particles in a solid-liquid two-phase flow model under different oil flow velocities. Additionally, based on an ultra-high frequency (UHF) antenna, PD experiments of metal particles in flowing oil under alternate current (AC) voltage were carried out to obtain the variation of discharge number, PD amplitude, φ-u and φ-n diagrams under corresponding flow velocities. Results showed that as the flow velocity increased, both discharge number and PD amplitude decreased, whereas the shape of φ-u and φ-n diagrams changed little. Combing with the simulated trajectories, the cause for increasing flow velocity to suppress PDs was the decrease of the oscillating motions of metal particle between the oil duct.
机译:变压器油中的金属颗粒会通过局部放电(PD)严重破坏电力变压器的内部绝缘状态,并最终导致变压器故障。与静态变压器油中的游离颗粒相比,在浸没式泵的作用下,变压器油管道内的运动金属颗粒可能具有显着不同的PD特性。为了研究PD的特性,本研究分析和模拟了在不同油流速下固液两相流模型中颗粒的力和轨迹。另外,以超高频(UHF)天线为基础,进行了交流(AC)电压下流动油中金属颗粒的PD实验,得到了放电数,PD幅值,φ-u和φ-n的变化。在相应流速下的图表。结果表明,随着流速的增加,放电次数和PD幅值均减小,而φ-u和φ-n图的形状变化很小。结合模拟轨迹,增加流速来抑制局部放电的原因是油管之间金属颗粒的振荡运动减少。

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