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Dynamic formation mechanism of water droplet and induced surface discharges on silicone rubber composites

机译:硅橡胶复合材料上水滴的动态形成机理和诱导的表面放电

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Wettability has become one of the most important factors influencing power equipment insulation system in coastal power grid, which can seriously threaten the safety of power grid. This paper aimed at numerical simulation and experimental investigation on dynamic formation mechanism of water droplet and induced surface discharges on silicone rubber composites under different AC voltages, considering the factors of surface tension and droplet volume. Obtained results reveal that the spreading coefficient increases with increasing the electric field intensity from 1 to 5 kV/cm and with increasing the droplet volume from 10 to 50 mu L. The spreading coefficient shows a decreasing tendency when the surface tension increases from 29.3 to 61.0 mN/m. Moreover, the maximum of surface electric field shows an increasing tendency under the condition of increasing both the droplet volume and the surface tension. On the basis of the physical model of droplet deformation, the electric field force and the surface tension play a significant role in the process of droplet deformation. Meanwhile, the experimental results are consistent with the simulation analysis, reflecting that the droplet deformation and the induced surface discharges mainly depend on two parameters: the droplet volume and the magnitude of applied voltage.
机译:可湿性已成为影响沿海电网电力设备绝缘系统的最重要因素之一,严重威胁电网安全。本文针对硅橡胶复合材料在不同交流电压下水滴的动态形成机理和诱导的表面放电的数值模拟和实验研究,考虑了表面张力和液滴体积的因素。所得结果表明,随着电场强度从1增加到5 kV / cm,液滴体积从10增加到50μL,扩散系数增加。当表面张力从29.3增加到61.0时,扩散系数呈下降趋势。牛顿/米此外,在液滴体积和表面张力都增加的条件下,表面电场的最大值显示出增加的趋势。根据液滴变形的物理模型,电场力和表面张力在液滴变形过程中起着重要作用。同时,实验结果与模拟分析结果吻合,表明液滴变形和感应表面放电主要取决于两个参数:液滴体积和施加电压的大小。

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