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Creeping flashover characteristics improvement of nanofluid/pressboard system with TiO2nanoparticles

机译:用TiO2NANOMALIGLICE的爬行闪络特性改进纳米流体/压板系统

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摘要

Creeping flashover easily occurs at the interface between oil and pressboard in transformer and thus results in outage of power transmission system. Investigations have shown that creeping flashover characteristics at oil/pressboard interface can be improved by the addition of TiO2 nanoparticles, but the mechanism is still not thoroughly known. In this work, creeping flashover performance at nanofluid/pressboard interface modified by different sizes of nanoparticles were studied and the mechanism was presented as well. Nanofluids with the same concentration but with different sizes of TiO2 nanoparticles were prepared, and pressboards impregnated with them were prepared as well. After that, their creeping flashover characteristics were measured and compared. Nanoparticle’s size affected the creeping flashover performance along oil/pressboard greatly under both AC and lightning impulse voltages. The highest creeping flashover voltage can be enhanced by as high as 12.2% and 32.0% respectively. The underlying electric field distribution and charge transportation behaviors were analyzed to demonstrate the influence of nanoparticle’s size. By the addition of nanoparticles with a smaller size, the dielectric constant of nanofluid was increased closer to that of the pressboard, thus they were matched better. Moreover, charge was easier to dissipate from the oil/pressboard interface and electric field distortion at the interface was consequently reduced. Therefore, the electric field was more like a uniform field and the forward development of flashover was more difficult, leading to a better performance of creeping flashover of oil-impregnated pressboard.
机译:蠕动闪络容易发生在变压器中的油气和压板之间的界面处,从而导致输电系统的中断。研究表明,通过加入TiO2纳米颗粒可以提高油/压板界面处的爬行闪络特性,但仍然不彻底地知道该机制。在这项工作中,研究了通过不同尺寸的纳米颗粒改性的纳米流体/压板界面处的蠕动闪络性能,并提出了该机制。制备具有相同浓度但具有不同尺寸的TiO2纳米颗粒的纳米流体,并制备浸渍在用它们的压力表中制备。之后,测量并比较它们的爬行闪络特性。在AC和雷电脉冲电压下,纳米粒子的尺寸大大影响了油/压板沿着油/压板的速度性能。最高的爬行闪络电压分别可以提高12.2%和32.0%。分析潜在的电场分布和电荷运输行为证明了纳米粒子尺寸的影响。通过添加具有较小尺寸的纳米颗粒,纳米流体的介电常数更接近压板的介电常数,因此它们匹配更好。此外,电荷更容易从油/压板界面散发,因此界面处的电场失真减少。因此,电场更像是均匀的田地,闪络的前向开发更加困难,从而更好地表现油浸式压板的蠕动闪络。

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