温度和化学对电容式水分传感器测定介电液体含水量的影响

T. Gradnik, B. Čuček, M. Koncan-Gradnik
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引用次数: 5

摘要

分析了影响电容式水分传感器测定变压器绝缘液含水量的温度和理化因素。水溶性系数用于从湿度传感器的相对饱和度和温度测量中计算含水量。在实验室控制条件下测定了矿物基、酯基和硅基变压器绝缘液的绝对含水量、水溶性系数和老化程度。本文对电容式水分传感器的测量结果、所研究的方法以及作为参考方法的卡尔费雪库仑直接滴定法进行了分析和讨论。实验结果证实,所研究液体的水溶性系数与液体的化学结构基本相关。分析和量化了液温和油循环速度对电容式湿度传感器测量误差的影响。本文讨论了实验室实验条件对实际运行中变压器电容式水分传感器测定水溶性系数的影响,以及电容式水分传感器测量含水量的潜在误差来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature and chemical impact on determination of water content in dielectric liquids by capacitive moisture sensors
Paper analyses temperature and physical-chemical factors that influence determination of water content in transformer insulating liquids by capacitive moisture sensors. Water solubility coefficients are used to calculate the water content from moisture sensor's relative saturation and temperature measurements. Absolute water content and water solubility coefficients of various types and ageing degree of mineral, ester and silicon based transformer insulating liquids were determined in controlled laboratory conditions. Results of capacitive moisture sensor measurement, the method under study, and the Karl Fisher coulometric direct titration method as the reference method, are analysed and discussed in the paper. The experimental results confirm that water solubility coefficients of the studied liquids can be basically correlated to the liquids' chemical structure. The impact of the liquid temperature and oil circulation speed on the error of the capacitive moisture sensor measurement is analysed and quantified. The paper discusses the influence of laboratory experimental conditions on determination of water solubility coefficients as well as potential error sources of water content measurements by capacitive moisture sensors in transformers in operation.
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