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Numerical Study on Alternating Current Breakdown Mechanism Between Sphere-Sphere Electrodes in Transformer Oil-Based Magnetic Nanofluids

机译:变压器油基磁性纳米流体球形电极交替电流击穿机构的数值研究

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摘要

A numerical simulation was developed for magnetic nanoparticles in a liquid dielectric to investigate the AC breakdown voltage of the magnetic nanofluids according to the volume concentration of the magnetic nanoparticles. In prior research, we found that the dielectric breakdown voltage of the transformer oil-based magnetic nanofluids was positively or negatively affected according to the amount of magnetic nanoparticles under a testing condition of dielectric fluids, and the trajectory of the magnetic nanoparticles in a fabricated chip was visualized to verify the related phenomena via measurements and computations. In this study, a numerical simulation of magnetic nanoparticles in an insulating fluid was developed to model particle tracing for AC breakdown mechanisms happened to a sphere-sphere electrode configuration and to propose a possible mechanism regarding the change in the breakdown strength due to the behavior of the magnetic nanoparticles with different applied voltages.
机译:为液体电介质中的磁性纳米颗粒开发了数值模拟,以研究磁性纳米粒子的体积浓度的磁性纳米流体的AC击穿电压。 在现有研究中,我们发现,根据介电流流体的测试条件下的磁性纳米颗粒的量,以及磁性纳米粒子在制造的芯片中的磁纳米粒子的轨迹,介电击穿电压和受磁性纳米颗粒的量受到正面或负面影响的介电击穿电压。 被可视化以通过测量和计算验证相关现象。 在该研究中,开发了绝缘流体中的磁性纳米颗粒的数值模拟,以模拟用于球形电极配置的交流击穿机构的粒子跟踪,并提出由于行为而有关击穿强度的变化的可能机制 具有不同施加电压的磁性纳米颗粒。

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