激光拉曼光谱在变压器油中溶解气体检测中的应用

Lizhi Zhao, Weigen Chen, Fu Wan, Jing Shi
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引用次数: 4

摘要

溶解气体分析(DGA)是诊断油浸式电力变压器内部绝缘状况的关键技术之一,因为变压器油中溶解的故障特征气体的浓度和产生速率可以反映变压器内部绝缘缺陷及其发展情况。找到一种准确的方法来检测混合气体的成分和含量是DGA的前提。与传统的在线监测技术相比,激光拉曼光谱(LRS)具有不消耗载气、不分离样品气体、使用单频激光、易于实现在线监测等无可比拟的优势。基于LRS的基本原理,阐述了LRS进行定量和定性分析的机理以及相关的实验方法。通过计算确定了变压器中7种故障特征气体的拉曼特征谱线。基于共聚焦拉曼技术和高灵敏度气体样品池,建立了一种用于气体检测的LRS测试装置。利用该装置对含有7种故障特征气体(H2、CH4、C2H6、C2H4、C2H2、CO、CO2)的混合气体样品进行了测试。结果表明,利用LRS对变压器油中溶解气体进行定性和定量分析是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Laser Raman spectroscopy applied in detecting dissolved gas in transformer oil
Dissolved Gas Analysis (DGA) is regarded as one of the key technologies to diagnose the internal insulation condition of oil-immersed power transformers, since the concentrations and the generation rates of the fault characteristic gases dissolved in transformer oil can reflect the internal insulation defects and their developments. It is the precondition of DGA to find an accurate way to detect the composition and the content of the mixed gas. Comparing with the traditional on-line monitoring technologies, Laser Raman spectroscopy (LRS) has incomparable advantages, such as no carrier gas consumption, no sample gas separation, using single-frequency laser, which is easy to achieve online monitoring. Based on the basic principle of LRS, we elaborate the mechanism using LRS for quantitative and qualitative analysis and the relevant experimental methods. The Raman characteristic spectral lines of the seven fault characteristic gases in transformer are determined by calculating. Based on confocal Raman technology and high sensitivity gas sample cell, a LRS test device for gas detection is established. By using this device, a mixed gas sample containing the seven fault characteristic gases (H2, CH4, C2H6, C2H4, C2H2, CO, CO2) is tested. The results show that the qualitative and quantitative analysis of LRS for dissolved gas in transformer oil is feasible.
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