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The research of temperature properties of photoacoustic spectroscopy detection for SF6 decomposition products in gas insulated switchgear

机译:气体绝缘开关柜中SF6分解产物光声光谱检测温度特性的研究

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Photoacoustic (PA) spectroscopy technology has proved to be effective in detection of SF6 decomposition products. But in the real application environment, the stability of the PA spectroscopy device is strongly affected by ambient temperature. In this paper, we took CO as an example to analyze the impact mechanism of temperature and the temperature correction formula of the response factor of carbon monoxide (PA signal corresponding to unit concentration gas) was derived. The real temperature properties of SF6 and CO were studied using a non-resonant PA spectroscopy device designed by our team. The study indicates that the PA signals of SF6 and CO are inversely proportional to temperature, which coincides with the theoretical derivation. A temperature correction method was proposed based on theoretical derivation combined with experimental study and this method was tested and validated. The results show that the relative errors of calculated concentrations of CO acquired by the correction method compared to the actual concentrations are all within 10%, which meets the detection requirements of PA spectroscopy for SF6 decomposition products in gas insulated switchgear. The correction method has provided an effective way for studying the temperature correction in PA detection for SF6 decomposition products in GIS.
机译:事实证明,光声(PA)光谱技术可有效检测SF6分解产物。但是在实际应用环境中,PA光谱仪的稳定性会受到环境温度的强烈影响。本文以一氧化碳为例,分析了温度的影响机理,推导了一氧化碳响应因子(单位浓度气体对应的PA信号)的温度校正公式。使用我们团队设计的非共振PA光谱仪研究了SF6和CO的真实温度特性。研究表明,SF6和CO的PA信号与温度成反比,与理论推导相符。提出了一种基于理论推导和实验研究相结合的温度校正方法,并进行了测试和验证。结果表明,采用校正法计算出的CO浓度与实际浓度的相对误差均在10%以内,符合PA光谱法对气体绝缘开关柜SF6分解产物的检测要求。该校正方法为研究GIS中SF6分解产物的PA检测中的温度校正提供了有效的方法。

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