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Moisture sensing in transformer oil using thin film microdielectrometry

机译:薄膜微介电法检测变压器油中的水分

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Experiments have been conducted using 1-7- mu m-thick layers of plasma-deposited bromobenzene on the interdigitated 50- mu m-wavelength electrodes of a microdielectrometer chip. Gain-phase measurements in the frequency range of 0.005-10000 Hz, normalized to the frequency for peak phase shift, are found to be universal. With account taken of the finite layer thickness, evidence is presented that the coatings act as semipermeable membranes, serving as barriers to the transformer oil but absorbing moisture in proportion to the absolute content in the oil. Sensitivity to moisture from less than 5 to about 50 p.p.m. is found with a transient response of less than a few minutes. Although the sensor is well suited to following the dynamics of water in paper-oil systems over periods of days or perhaps weeks, a long-term loss of sensitivity must be overcome if it is to be used without recalibration for extended periods of time. Its use for discerning abnormal behavior in a pilot transformer monitoring system is described.
机译:已经在微介电芯片的相互交叉的50μm波长电极上使用等离子沉积的1-7μm厚的等离子沉积的溴苯层进行了实验。已发现在0.005-10000 Hz频率范围内的增益相位测量很普遍,已标准化为峰值相移频率。考虑到有限的层厚,有证据表明涂层起半透膜的作用,对变压器油起着屏障的作用,但吸收的水分与油中的绝对含量成正比。对水分的敏感性低于5到约50 p.p.m.发现瞬态响应少于几分钟。尽管该传感器非常适合在几天甚至几周的时间内跟踪纸油系统中水的动态变化,但是如果要使用它而无需长时间重新校准,则必须克服其长期的灵敏度下降的问题。描述了其在先导变压器监控系统中识别异常行为的用途。

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