Study on the gas pressure characteristics of photoacoustic spectroscopy detection for dissolved gases in transformer oil

Fu Wan, Weigen Chen, X. Peng, Jing Shi
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引用次数: 12

Abstract

Photoacoustic spectroscopy (PAS) is a highly sensitive gas analyzing method without the shortcoming of gas consumption, which can be well applied in online monitoring of dissolved gas-in-oil. The effect of gas pressure on the photoacoustic spectroscopy detection is significant. Functional relations between gas pressure and gas absorption coefficient as well as PAV signal were derived theoretically. The experimental results of the acetylene , methane and carbon dioxide dissolved in transformer oil show the correctness of the functional relations above and that Photoacoustic spectroscopy voltage signal has a good linear dependence on the 1.5th root of P (0KPa<;P<;75KPa ) and the square root of P(75KPa<;P<;100KPa)when without gas absorption saturation effect. The theoretical and experimental results supply reference and technical support for further improvements in oil gas photoacoustic spectroscopy of on-line monitoring system.
光声光谱法检测变压器油中溶解气体的压力特性研究
光声光谱法(PAS)是一种灵敏度高、耗气量少的气体分析方法,可以很好地应用于油中溶解气的在线监测。气体压力对光声光谱检测的影响是显著的。从理论上推导了气体压力与气体吸收系数以及PAV信号的函数关系。对变压器油中溶解的乙炔、甲烷和二氧化碳的实验结果表明,上述函数关系是正确的,在没有气体吸收饱和效应的情况下,光声光谱电压信号与P的1.5次方根(0KPa<;P<;75KPa)和P的平方根(75KPa<;P<;100KPa)有良好的线性关系。理论和实验结果为进一步改进油气光声光谱在线监测系统提供了参考和技术支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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