石油化工安全环保技术 ›› 2026, Vol. 42 ›› Issue (3): 1-6.

• 事故分析与预防 •    

电加热变压器高压侧过零调功的励磁涌流分析

李志远1,时振堂2   

  1. 1. 中国石化集团石油商业储备有限公司,北京 100020 ;
    2. 中石化(大连)石油化工研究院有限公司,辽宁 大连 116045
  • 收稿日期:2026-03-16 接受日期:2026-05-15 出版日期:2026-06-20 发布日期:2026-07-06
  • 作者简介:李志远,男, 1993 年毕业于西安交通大学高电压技术与设备专业,本科,现从事石油库和储备库发展规划、工程建设和设备管理工作。E-mail: lizhy@sinopec.com基金项目:中国石化集团公司资助项目 323126, 324084。

Analysis of Excitation Inrush Current for Ze- ro-Crossing Power Regulation on the hv Side of an Electric Heating Transformer

Li Zhiyuan1,Shi Zhentang2   

  1. 1. Sinopec Petroleum Reserve Co.,Ltd, Beijing, 100020;
    2. Sinopec Petrochemical Research Institute Co.,Ltd, Dalian, Liaoning, 116045.
  • Received:2026-03-16 Accepted:2026-05-15 Online:2026-06-20 Published:2026-07-06

摘要: 本文针对电加热变压器高压侧过零调功过程中出现的励磁涌流问题,基于 MATLAB 平台搭建仿真模型,系统探究触发角、铁芯剩磁、负载率及负载性质等关键因素对带载工况下励磁涌流的影响规律,并对过零调功时一次侧电流与铁芯磁通的变化特性进行定量、定性分析。研究结果表明:负载性质对涌流影响显著,负载的感性无功分量会加剧励磁涌流,而容性无功分量可在一定程度上削弱涌流,当合闸角超前 90°时,励磁涌流就可完全消除。此外,涌流抑制方法,选相控制复杂度较高,涌流抑制效果好;软启动控制操作简便,会产生大量奇次谐波。

关键词: 电加热变压器, 励磁涌流, 过零调功, 选相控制, 软启动

Abstract: This paper addresses the issue of excitation inrush current during zero-crossing power regulation on the high-voltage side of an electric heating transformer. A simulation model is established using the MATLAB platform to systematically investigate the influence of key factors such as firing angle, core residual flux, load rate, and load characteristics on the inrush current under loaded conditions. Quantitative and qualitative analyses are performed on the variation characteristics of the primary-side current and core flux during zero-crossing power regulation. The results show that load characteristics significantly affect the inrush current: the inductive reactive component of the load exacerbates the inrush current, whereas the capacitive reactive component can mitigate it to some extent. Moreover, when the closing angle is 90°ahead, the inrush current can be completely eliminated. Regarding inrush current suppression methods, phase-selection control achieves excellent suppression but involves high complexity, while soft-start control is simple to operate but generates a large number of odd harmonics.

Key words: electric heating transformer, excitation inrush current, zero-crossing power regulation, phase selection control, soft-start