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dc field effects on streaming electrification in insulating oils

机译:直流电场对绝缘油中流化带电的影响

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摘要

The results of an experimental investigation into the influence of impurities on electrification in insulating liquids in a tube model under an external dc field effect is described. Both conduction and streaming currents were measured as a function of temperature and flow rate using a paper-pressboard model with concentric cylindrical electrode geometry. Positive or negative dc voltage was applied to the inner electrode. The streaming current was measured from a shielded test chamber and the conduction current was measured from the ground electrode. Energization by positive dc voltage always enhanced the streaming electrification; however, when the applied voltage was negative, the polarity of streaming current was field strength dependent. At low fields (>0.52 kV/mm), the streaming current with negative dc field I/sub sn//sup c/ increased with increased field and with field strength <0.52 kV/mm, polarity reversal was observed. The field at which current crossed the zero value has been defined as the zero cross over point (ZCOP). Flow rate did not have any influence on the ZCOP; however, the additive concentration, moisture content and the temperature affected this ZCOP. In the presence of the corrosion inhibitor carbazole, the streaming current with negative dc field, I/sub sn/ attained zero at low fields. The conduction currents corresponding to fields where streaming currents were zero were also relatively low. It is therefore possible that by applying a moderate dc field of appropriate polarity the streaming current can be reduced to very low values by adjusting the carbazole concentration in the test liquid.
机译:描述了在外部直流场效应下管模型中杂质对绝缘液体中带电影响的实验研究结果。使用具有同心圆柱电极几何形状的压纸板模型,可以测量传导电流和流动电流与温度和流速的关系。将正或负直流电压施加到内部电极。从屏蔽的测试室中测量流过电流,并从接地电极中测量传导电流。直流正电压激励始终增强流式电气化。但是,当施加的电压为负时,流动电流的极性取决于场强。在低场(> 0.52 kV / mm)下,具有负dc场I / sub sn // sup c /的流电流随着场的增加而增加,并且场强<0.52 kV / mm时,观察到极性反转。电流穿过零值的场已定义为零交叉点(ZCOP)。流速对ZCOP没有任何影响;然而,添加剂浓度,水分含量和温度影响了该ZCOP。在存在缓蚀剂咔唑的情况下,直流电场I / sub sn /为负的流动电流在低电场下达到零。与流电流为零的场相对应的传导电流也相对较低。因此,有可能通过施加适当极性的适度dc场,通过调节测试液体中的咔唑浓度,可将流过的电流减小到非常低的值。

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