吴书煜, 汲胜昌, 孙建涛, 梁宁川, 赵涛, 代双寅. 在运换流变压器振动监测及其变化规律[J]. 高电压技术, 2022, 48(4): 1561-1570. DOI: 10.13336/j.1003-6520.hve.20201674
引用本文: 吴书煜, 汲胜昌, 孙建涛, 梁宁川, 赵涛, 代双寅. 在运换流变压器振动监测及其变化规律[J]. 高电压技术, 2022, 48(4): 1561-1570. DOI: 10.13336/j.1003-6520.hve.20201674
WU Shuyu, JI Shengchang, SUN Jiantao, LIANG Ningchuan, ZHAO Tao, DAI Shuangyin. Vibration Monitoring and Variation Law of Converter Transformer in Operation[J]. High Voltage Engineering, 2022, 48(4): 1561-1570. DOI: 10.13336/j.1003-6520.hve.20201674
Citation: WU Shuyu, JI Shengchang, SUN Jiantao, LIANG Ningchuan, ZHAO Tao, DAI Shuangyin. Vibration Monitoring and Variation Law of Converter Transformer in Operation[J]. High Voltage Engineering, 2022, 48(4): 1561-1570. DOI: 10.13336/j.1003-6520.hve.20201674

在运换流变压器振动监测及其变化规律

Vibration Monitoring and Variation Law of Converter Transformer in Operation

  • 摘要: 换流变压器振动变化特性与其运行状态密切相关,而目前缺乏对变压器以及换流变压器整个运行期间振动规律的有效研究。为此,在振动在线监测系统研制与信号采集的基础上,结合理论研究与在线监测数据分析,阐明了换流变压器不同运行状态下油箱表面的振动变化规律;根据电流、电压不同组合方式定义了换流变压器4种不同的振动阶段;最后研究了特殊运行状态下的振动特征。研究结果表明:与普通电力变压器振动主要集中在基频100 Hz不同,换流变压器特定位置的振动主要集中在200 Hz与400 Hz;在不同运行状态下换流变压器的振动差异较大,但整体随电流电压呈规律性变化;铁芯状态监测选择在Ⅱ振动阶段,绕组状态监测选择在Ⅳ振动阶段。研究结果为基于振动法对变压器机械状态监测与故障诊断提供了有效的适用区间与数据支持,排除了自身不同运行状态造成的误差。

     

    Abstract: The vibration characteristics of converter transformer are closely related to its operating conditions. However, at present, there is a lack of effective research on the vibration laws of transformer and converter transformer during the whole operating period. Consequently, based on the development of the vibration online monitoring system and signal acquisition, combined with theoretical research and online monitoring data analysis, the variation law of oil tank surface vibration of the converter transformer under different operating conditions is explained. Four different vibration stages of the converter transformer are defined in terms of different combinations of current and voltage.Finally, the vibration characteristics under special operating conditions are studied. The research results show that, compared with ordinary power transformers whose vibration is mainly concentrated at the fundamental frequency of 100 Hz, while the vibration of the converter transformer at a specific location is mainly concentrated at 200 Hz and 400 Hz. There are quite differences in vibration under different operating conditions, but the overall vibration changes regularly with the current and voltage. The core condition monitoring should be selected in the Ⅱ vibration stage, and the winding condition monitoring should be selected in the Ⅳ vibration stage. The research results provide an effective applicable range and data support for mechanical condition monitoring and fault diagnosis of transformer based on the vibration signal analysis method, and eliminate errors caused by its own different operating conditions.

     

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