武汉大学电气与自动化学院,武汉,430072
纸质出版:2025
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王锦聪, 李毅恒, 郑宇, 等. 基于丁达尔效应的新型环保绝缘气体稳定性评估[J]. 高电压技术, 2025,51(6):2672-2679.
WANG Jincong, LI Yiheng, ZHENG Yu, et al. Stability Evaluation of New Eco-friendly Insulating Gases Based on Tyndall Effect[J]. 2025, 51(6): 2672-2679.
王锦聪, 李毅恒, 郑宇, 等. 基于丁达尔效应的新型环保绝缘气体稳定性评估[J]. 高电压技术, 2025,51(6):2672-2679. DOI: 10.13336/j.1003-6520.hve.20240631.
WANG Jincong, LI Yiheng, ZHENG Yu, et al. Stability Evaluation of New Eco-friendly Insulating Gases Based on Tyndall Effect[J]. 2025, 51(6): 2672-2679. DOI: 10.13336/j.1003-6520.hve.20240631.
新型环保绝缘气体因其优异的绝缘性能和低温室效应,在电力行业受到广泛关注。然而,电力设备中存在的局部放电会导致新型环保绝缘气体发生分解,降低其本身的绝缘性能。为探究新型环保绝缘气体在放电环境下的稳定性,提出一种基于丁达尔效应的激光散射检测方法,研究了丁达尔效应与固体分解产物之间的关系。结果显示分解产物的含量与散射光强呈正相关,在相同的放电条件下,C4F7N的稳定性要优于CF3SO2F。在CF3SO2F体积分数为20%的CF3SO2F/N2混合气体中,放电分解固体产物散射光强分别为相同体积分数下C4F7N的28.1倍、SF6的224.3倍;在CF3SO2F体积分数为10%的混合气体中,放电分解固体产物散射光强分别为相同体积分数下C4F7N的5.3倍、SF6的36.0倍。此外,当放电时间小于10 s时,C4F7N可以表现出与SF6相当的稳定性。基于丁达尔效应的激光散射检测为新型环保绝缘气体在放电环境下的稳定性评估提供了新的方法。
New eco-friendly insulating gases have received widespread attention in the power industry due to their excellent insulating properties and low greenhouse effect. However
partial discharges in power equipment can lead to the decomposition of the new eco-friendly insulating gases and reduce their insulating properties. In order to investigate the stability of the new eco-friendly insulating gas under the discharge environment
a laser scattering detection method based on the Tyndall effect is proposed
and the relationship between the Tyndall effect and the solid decomposition products is studied. The results show that the content of decomposition products is positively correlated with the scattered light intensity
and under the same discharge conditions
the stability of C4F7N is better than that of CF3SO2F. Specifically
in a CF3SO2F/N2 gas mixture with a CF3SO2F volume fraction of 20%
the scattering light intensity of the solid product formed by discharge decomposition is 28.1 times that of C4F7N and 224.3 times that of SF6 under the same volume fraction. When the CF3SO2F volume fraction is reduced to 10%
the corresponding scattering intensities are 5.3 times and 36.0 times higher than those of C4F7N and SF6
respectively. Moreover
when the discharge duration is less than 10 s
C4F7N exhibits a level of discharge stability comparable to that of SF6. The laser scattering detection based on the Tyndall effect provides a novel method for evaluating the discharge stability of new eco-friendly insulating gases in a discharge environment.
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