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Dissolved Hydrogen Detection in Power Transformer Based on Etched Fiber Bragg Grating

机译:基于蚀刻纤维布拉格光栅的电力变压器溶解氢检测

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Due to aging and degrading of insulation oil in power transformers, dissolved hydrogen, as a typical fault gas, would produce accompanied by discharges or overheating. Palladium (Pd) film deposited on the surface of chemically etched fiber Bragg grating (FBG) as sensing element by magnetron sputtering process is proposed in this paper. Volume expands when Pd film with 560nm thickness absorbs hydrogen molecules and wavelength shift caused by the strain could be measured. In this principle, hydrogen of low concentration can be obtained through wavelength shift of FBG. Different aspects have been taken into consideration including membrane thickness, polyimide coating and cladding diameter to obtain satisfactory sensitivity. Experimental results in the lab showed that this developed hydrogen could detect 30 μL/L at 1 pm approximately, which proved to be a prospective sensor as a on-line method to be utilized in power transformers.
机译:由于电力变压器中的绝缘油老化和降低,溶解氢,作为典型的故障气体,将产生伴随放电或过热。本文提出了沉积在化学蚀刻纤维布拉格光栅(FBG)表面上的钯(Pd)薄膜作为通过磁控溅射工艺的传感元件。当具有560nm厚度的Pd膜吸收氢分子和由应变引起的波长换档时,体积膨胀。在该原理中,通过FBG的波长偏移可以获得低浓度的氢。已经考虑了不同的方面,包括膜厚度,聚酰亚胺涂层和包层直径,以获得令人满意的敏感性。实验室的实验结果表明,该开发的氢气可以在大约下午1m下检测30μl/ L,这被证明是前瞻性传感器,作为电力变压器中的在线方法。

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