李原, 杨森鸿, 周浩, 周凯, 刘榆. 直流电压下油纸绝缘纤维杂质成桥放电特性综述[J]. 高电压技术, 2023, 49(4): 1645-1652. DOI: 10.13336/j.1003-6520.hve.20220477
引用本文: 李原, 杨森鸿, 周浩, 周凯, 刘榆. 直流电压下油纸绝缘纤维杂质成桥放电特性综述[J]. 高电压技术, 2023, 49(4): 1645-1652. DOI: 10.13336/j.1003-6520.hve.20220477
LI Yuan, YANG Senhong, ZHOU Hao, ZHOU Kai, LIU Yu. Review on Bridging and Discharging Characteristics of Cellulose Impurities in Oil-paper Insulation Under DC Voltage[J]. High Voltage Engineering, 2023, 49(4): 1645-1652. DOI: 10.13336/j.1003-6520.hve.20220477
Citation: LI Yuan, YANG Senhong, ZHOU Hao, ZHOU Kai, LIU Yu. Review on Bridging and Discharging Characteristics of Cellulose Impurities in Oil-paper Insulation Under DC Voltage[J]. High Voltage Engineering, 2023, 49(4): 1645-1652. DOI: 10.13336/j.1003-6520.hve.20220477

直流电压下油纸绝缘纤维杂质成桥放电特性综述

Review on Bridging and Discharging Characteristics of Cellulose Impurities in Oil-paper Insulation Under DC Voltage

  • 摘要: 换流变压器阀侧绕组长期处于直流电场分量作用下,其绝缘面临严重的纤维杂质成桥放电问题。对此,系统综述了直流电压下油纸绝缘纤维杂质成桥放电特性研究进展。首先论述了纤维杂质在电、热、流场作用下的生成机制,指出电场下的空间电荷作用及电场力作用、热场下的热裂解及氧化裂解、流场下的分子振动均可能导致纤维脱落而形成杂质;其次探讨了油中自由纤维杂质迁移规律,提出纤维杂质运动过程主要考虑重力、浮力、库伦力、介电泳力及粘滞阻力的影响,且直流电场作用是纤维杂质成桥的必要条件;随后介绍了直流电压作用下纤维杂质诱发油中放电机理,指出纤维杂质易与水构成“核壳”高电导结构,并以直接场畸变效应及亚稳态液体成核气化效应诱发油中放电。在此基础上,提出目前直流电压下油纸绝缘纤维杂质成桥放电研究亟待解决的关键科学问题,即探究电、热、流多场协同作用下的纤维素分子链断裂机理,揭示纤维杂质动力学行为特征对油中电荷行为的影响规律。

     

    Abstract: The valve side winding of converter transformer has to bear DC electric field perennially, which introduces severe discharge to its insulation due to cellulose impurity bridge. For this reason, the bridging and discharging characteristics of cellulose impurities in oil-paper insulation under DC voltage is systematically stated. Firstly, the generation mechanism of the impurities under electric, thermal and flow fields is discussed, and it is shown that the effect of space charge and electric field force under electric field, thermal cracking and oxidative cracking under thermal field, and molecular vibration under flow field may lead to cellulose shedding. Secondly, the migration law of free cellulose impurities is discussed. It is proposed that the movement of the impurities is mainly influenced by gravity, buoyancy, Coulomb force, dielectrophoresis force, and viscous resistance, whereas DC electric field is a necessity for bridging. Afterwards, the mechanism of oil discharge induced by the impurities under DC voltage is introduced, and it is pointed out that cellulose impurities can form a "core-shell" conductive structure with water, and can cause discharges based on the field distortion effect and metastable liquid nucleation/vaporization effect. On the basis above, key scientific issues are proposed, including exploring the molecular chain breaking mechanism of cellulose impurities under the synergistic effect of electric, thermal and flow field, and the influence of cellulose impurity's kinetic behavior on charge behavior in oil is revealed.

     

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