The occurrence and mechanism of hysteresis between axial deformation and short-circuit electromagnetic force during the vibration of power transformer windings

IF 1.5 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Iet Electric Power Applications Pub Date : 2024-06-02 DOI:10.1049/elp2.12454
Mingkai Jin, Weijie Xu, Weijiang Chen, Qiaogen Zhang, Yi Zhao, Tao Wen
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Abstract

Mechanical stability is one of the core capabilities of power transformers. External short-circuit accidents are the main cause of winding instability. International Electrotechnical Commission 60076-5 standard recommends a method to calculate the short-circuit strength of power transformer windings by comparing the stress within windings under the effect of the maximum electromagnetic force with the critical stress of the winding. This method assumes that the maximum deformation will be produced by the maximum electromagnetic force, which corresponds to the first peak of the waveform. However, owing to the interactions between disks during the vibration process, the maximum deformation may occur after the occurrence of the maximum electromagnetic force. The hysteresis phenomenon between disk deformation and electromagnetic force is studied. The definition of the hysteresis phenomenon during the vibration process is first demonstrated, and the mechanism of the hysteresis phenomenon is investigated. The vibration model is established. By decoupling analysis, the conditions for the formation of hysteresis are proposed, and the mechanism of the hysteresis phenomenon is validated by the experiment, which is conducted on a winding sample. In the deformation formula, the term that determines the time-varying characteristic is found. The waveform-determining term is the difference between the two cosine components, whose frequencies are the natural vibration frequency and the electromagnetic force frequency. When the two frequencies are close, the maximum deformation lags behind the maximum force, and the hysteresis phenomenon occurs.

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电力变压器绕组振动时轴向变形与短路电磁力之间滞后现象的发生及其机理
机械稳定性是电力变压器的核心性能之一。外部短路事故是造成绕组不稳定的主要原因。国际电工委员会 60076-5 标准推荐了一种计算电力变压器绕组短路强度的方法,即比较绕组在最大电磁力作用下的应力和绕组的临界应力。该方法假定最大电磁力将产生最大变形,而最大电磁力与波形的第一个峰值相对应。然而,由于振动过程中磁盘之间的相互作用,最大变形可能发生在最大电磁力出现之后。本文研究了磁盘变形与电磁力之间的滞后现象。首先论证了振动过程中滞后现象的定义,并研究了滞后现象的机理。建立了振动模型。通过解耦分析,提出了滞后形成的条件,并通过在绕组样品上进行的实验验证了滞后现象的机理。在变形公式中,找到了决定时变特性的项。波形决定项是两个余弦分量之差,其频率为自然振动频率和电磁力频率。当两个频率接近时,最大变形滞后于最大力,出现滞后现象。
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来源期刊
Iet Electric Power Applications
Iet Electric Power Applications 工程技术-工程:电子与电气
CiteScore
4.80
自引率
5.90%
发文量
104
审稿时长
3 months
期刊介绍: IET Electric Power Applications publishes papers of a high technical standard with a suitable balance of practice and theory. The scope covers a wide range of applications and apparatus in the power field. In addition to papers focussing on the design and development of electrical equipment, papers relying on analysis are also sought, provided that the arguments are conveyed succinctly and the conclusions are clear. The scope of the journal includes the following: The design and analysis of motors and generators of all sizes Rotating electrical machines Linear machines Actuators Power transformers Railway traction machines and drives Variable speed drives Machines and drives for electrically powered vehicles Industrial and non-industrial applications and processes Current Special Issue. Call for papers: Progress in Electric Machines, Power Converters and their Control for Wave Energy Generation - https://digital-library.theiet.org/files/IET_EPA_CFP_PEMPCCWEG.pdf
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