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Partial discharge inception voltage investigation of mineral oil: effect of electrode configurations and oil conditions

机译:矿物油的局部放电起始电压研究:电极配置和油条件的影响

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The aim of this paper is to describe the Partial Discharge Inception Voltage (PDIV) and Partial Discharge (PD) characteristic of mineral oil tested by various electrode configurations. Furthermore, mineral oil with different conditions was investigated under AC voltage. The PDIV and PD of the mineral oil, Nynas Nytro 4000x, with water content about 4 ppm was investigated by using various electrode configurations of needle - plane and needle - sphere electrodes under room temperature. The PDIV test circuit was set up according to IEC 60270. Then, two PDIV measurements were applied for the investigation. The first PDIV test procedure (IEC method) was performed in accordance with IEC 61294. The second PDIV test procedure so-called combined PDIV method was adapted from IEC standard. Moreover, the electric field distributions of the electrode systems were also calculated. According to the test results, PDIV depended clearly on the electric field stress of the electrode system and the test method. Compared with other electrode configurations, the 10 μm tip radius needle - 75 mm dia. plane electrode gave the highest electric field stress and inversely provided the lowest PDIV value tested by both test methods. The combined PDIV test method generated the PDIV, charge quantity, and charge repetition significantly lower than measuring by IEC method. To investigate the effect of oil conditions on PDIV and PD characteristics, the combined conditions of temperature and water content of the mineral oil were controlled as the parameters for investigation. It was found that the water content in the mineral oil influenced approximately on PDIV value when the oil temperature was at room temperature. However, at the oil temperature of 40-90 °C, the PDIV values of the mineral oil with water content 4, 20 and 40 ppm were relatively the same. From the PD pulse current test results, PD pulse current recorded at the PDIV value from both test methods was about 0.15-1.3 mA. Pulse duration was in the range of 0.7-9 μs and the rise time was between 40-570 ns.
机译:本文的目的是描述通过各种电极配置测试的矿物油的局部放电起始电压(PDIV)和局部放电(PD)特性。此外,在交流电压下研究了不同条件下的矿物油。通过在室温下使用针状平面电极和针状球形电极的各种电极配置,研究了含水量约为4 ppm的矿物油Nynas Nytro 4000x的PDIV和PD。根据IEC 60270设置PDIV测试电路。然后,两次PDIV测量用于调查。第一个PDIV测试程序(IEC方法)是根据IEC 61294执行的。第二个PDIV测试程序即所谓的组合PDIV方法是从IEC标准改编而来的。此外,还计算了电极系统的电场分布。根据测试结果,PDIV明显取决于电极系统的电场应力和测试方法。与其他电极配置相比,尖端半径为10μm的针-直径75 mm。平面电极产生最高的电场应力,反之则提供通过两种测试方法测得的最低PDIV值。组合的PDIV测试方法产生的PDIV,电荷量和电荷重复率明显低于通过IEC方法进行的测量。为了研究石油条件对PDIV和PD特性的影响,控制了矿物油的温度和含水量的组合条件作为研究参数。发现当油温为室温时,矿物油中的水含量大约影响PDIV值。然而,在40-90°C的油温下,含水量为4、20和40 ppm的矿物油的PDIV值相对相同。从PD脉冲电流测试结果来看,两种测试方法都以PDIV值记录的PD脉冲电流约为0.15-1.3 mA。脉冲持续时间在0.7-9μs范围内,上升时间在40-570 ns之间。

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