Chen Bin, Wu Hong-yang, Han Chao, Yan Huan, Liu Ge
Guang Pu Xue Yu Guang Pu Fen Xi. 2015 Oct;35(10):2740-5.
Trace water has a significant impact on the electrical performances of the insulating oil, such as the dielectric loss factor, resistivity. So there is an important significance to investigate the influence of insulating oil by trace water, and monitor its operating status with effective measures. First, it is necessary to prepare the insulating oil samples with different water content and treat them 8 hours with ultrasonic oscillator, and observe microscopic images about the water-oil mixtures in order to study their relative uniformity and stable time, in the way it can be concluded that the relative uniformity can be kept favorable during the 25 min stable time for free water and emulsification water in oil; Based on this conclusion, the dielectric loss factor, resistivity were tested and the electrical performances of insulating oil with different water content in oil can obtained by analyzing these data; Then, the absorbance value of the different water content in oil at the spectral wave number of 1 640, 3 400, 3 450, 3 615 cm(-1), with the mid-infrared spectral scanning and analyzing to the different water content in oil, Therefore, combined the water absorbance values by the mid-infrared spectral scanning and analyzing with the experimental data of dielectric loss factor value, resistivity value of oil samples. The results shows that the absorbance value of the different water content in oil has a significant difference at the spectral wave number of 1 640, 3 400, 3450, 3 615 cm(-1), their correlation coefficient are 0.964 1, 0.984 8, 0.984 5, 0.944 0 between the absorbance value and water content at the spectral wave number of 1 640, 3 400, 3 450, 3 615 cm(-1), it can be obtained that the absorbance value of sample of moisture in the corresponding characteristic wave number can better reflect the change trend of water content; there is the highly relative of water absorbance values at the spectral wave number of 3 400 and 3 450 cm(-1) with the trends of oil dielectric loss factor values, their correlation coefficient are 0.860 6, 0.863 6; and relative of water absorbance values at the spectral wave number of 1 640 and 3 615 cm(-1) with the trends of oil resistivity values, their correlation coefficient is -0.931 5 and -0.968 0, this result can be lay the foundation research for monitoring the trace water in oil.
微量水分对绝缘油的电气性能有显著影响,如介质损耗因数、电阻率等。因此,研究微量水分对绝缘油的影响,并采取有效措施监测其运行状态具有重要意义。首先,有必要制备不同含水量的绝缘油样品,并用超声波振荡器处理8小时,观察水 - 油混合物的微观图像,以研究它们的相对均匀性和稳定时间,通过这种方式可以得出,在25分钟的稳定时间内,油中游离水和乳化水的相对均匀性可以保持良好;基于这一结论,测试介质损耗因数、电阻率,并通过分析这些数据得到不同含水量绝缘油的电气性能;然后,对不同含水量的油样进行中红外光谱扫描分析,得到油中不同含水量在1640、3400、3450、3615 cm⁻¹光谱波数处的吸光度值,因此,将中红外光谱扫描分析得到的吸水值与油样的介质损耗因数值、电阻率值的实验数据相结合。结果表明,油中不同含水量在1640、3400、3450、3615 cm⁻¹光谱波数处的吸光度值有显著差异,在1640、3400、3450、3615 cm⁻¹光谱波数处吸光度值与含水量之间的相关系数分别为0.964 1、0.984 8、0.984 5、0.944 0,可以得出在相应特征波数下样品水分的吸光度值能较好地反映含水量的变化趋势;在3400和3450 cm⁻¹光谱波数处的吸水值与油介质损耗因数值的变化趋势有高度相关性,相关系数分别为0.860 6、0.863 6;在1640和3615 cm⁻¹光谱波数处的吸水值与油电阻率值的变化趋势相关,相关系数分别为 -0.931 5和 -0.968 0,这一结果可为监测油中微量水分奠定基础研究。