电工材料电气绝缘全国重点实验室(西安交通大学),西安,710049
纸质出版:2025
移动端阅览
穆泽渊, 蒋泽赟, 王成龙, 等. 变压器油中电弧的产气特性[J]. 高电压技术, 2025,51(7):3434-3442.
MU Zeyuan, JIANG Zeyun, WANG Chenglong, et al. Gas Generation Characteristics of Arc in Transformer Oil[J]. 2025, 51(7): 3434-3442.
穆泽渊, 蒋泽赟, 王成龙, 等. 变压器油中电弧的产气特性[J]. 高电压技术, 2025,51(7):3434-3442. DOI: 10.13336/j.1003-6520.hve.20241599.
MU Zeyuan, JIANG Zeyun, WANG Chenglong, et al. Gas Generation Characteristics of Arc in Transformer Oil[J]. 2025, 51(7): 3434-3442. DOI: 10.13336/j.1003-6520.hve.20241599.
近年来,国内发生了多起油浸式变压器因电弧故障导致内部压力升高进而箱体破裂的事故,严重威胁电网运行和人员安全。电弧迅速气化、裂解绝缘油产生的高温气体是导致变压器内部超压的主要原因,但目前对电弧故障产气特性的研究尚不深入。因此搭建了油中工频电弧放电实验平台,探究了电弧电流幅值和弧长对油中电弧产气特性的影响规律,并研究了不同燃弧时段的电弧产气特性。实验结果表明:电弧电流幅值对单位能量产气量的影响较小,而弧长的增加会增大单位能量产气量,同时也会增大电弧能量,因此导致了压力的显著增加;电弧燃弧过程中,绝缘油裂解均比较充分,H2、C2H2、CH4、C2H4为主要裂解产物;电弧电流幅值对气体成分影响很小,35 mm弧长条件下裂解气体成分为约64%H2、21.1%C2H2、7.5%CH4、6.5%C2H4以及0.9%的其他气体,而弧长的增加会导致H2含量的略微增加;电弧燃弧过程中,受到气泡内部温度和压力的影响,H2含量有一个逐渐下降至稳定值的趋势。该研究结果为下一步油中电弧压力特性的深入研究奠定了重要基础。
In recent years
there have been multiple accidents in China where oil immersed transformers have experienced internal pressure rise and tank rupture due to arc faults
posing a serious threat to the operation of the power grid and personnel safety. The rapid gasification of electric arcs and the high-temperature gas generated by the cracking of insulating oil are the main causes of internal overpressure; however
the in-depth research on the gas generation characteristics of arc faults is rarely available in the literature. Therefore
we established an experimental platform for power-frequency arc discharge in oil
explored the influence of current amplitude and arc length on the gas generation characteristics of arc in oil
and conducted research on the gas generation characteristics of arc in different stages. The experimental results show that the arc current amplitude has a small effect on the quantity of generated gas per unit of energy
whereas an increase in arc length increases the quantity of generated gas per unit of energy and significantly increases the arc energy
thus leading to a surge in pressure. During the arc discharge process
the insulating oil is relatively fullly cracked
and H2
C2H2
CH4
and C2H4 are the main cracking products. The arc current amplitude has a small effect on the gas composition. The cracking gas composition at 35 mm arc length is about 64%H2
21.1%C2H2
7.5%CH4
6.5%C2H4
and 0.9% other gases
and an increase in the arc length leads to a slight increase in the H2 content. During the arc discharge process
the H2 content tends to gradually decrease to a stable value due to the influence of temperature and pressure inside the bubble. The results of this paper lay an important foundation for the next step in the characterization of arc pressure in oil.
0
浏览量
0
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621