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High-voltage partial-core resonant transformers

机译:高压分芯谐振变压器

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摘要

This thesis first describes the reverse method of transformer design. An existing magnetic model for full-core shell-type transformers, based on circuit theory, is summarised. A magneto-static finite element model is introduced and two sample transformers are analysed. The magnetic model based on finite element analysis is shown to be more accurate than the model based on circuit theory.Partial-core resonant transformers are then introduced and their characteristics are explained using an equivalent circuit model. A method of measuring the winding inductances under resonant operation is developed and used to investigate the characteristics of two different tuning methods. A finite element model of the partial-core resonant transformer is developed by adopting the model for full-core shell-type transformers.The model results accurately match the measured inductance variation characteristics of three sample transformers and predict the onset of core saturation in both axial-offset and centre-gap arrangements. A new design of partial-core resonant transformer is arrived at, having an alternative core and winding layout, as well as multiple winding taps. The finite element model is extended to accommodate the new design and a framework of analysis tools is developed. A general design methodology for partial-core resonant transformers with fixed inductance is developed. A multiple design method is applied to obtain an optimal design for a given set of specifications and restrictions. The design methodology is then extended to devices with variable inductance.Three design examples of partial-core resonant transformers with variable inductance are presented. In the first two design examples, existing devices are replaced. The new transformer designs are significantly lighter and the saturation effects are removed. The third design example is a kitset for high-voltage testing, with the capability to test any hydro-generator stator in New Zealand. The kitset is built and tested in the laboratory, demonstrating design capability. Other significant test results, for which no models have yet been developed, are also presented. Heating effects in the core are reduced by adopting an alternative core construction method, where the laminations are stacked radially, rather than in the usual parallel direction. The new kitset is yet to be used in the field.
机译:本文首先介绍了变压器设计的反向方法。基于电路理论,总结了现有的全芯壳型变压器的磁模型。介绍了一个静磁有限元模型,并分析了两个样本变压器。结果表明,基于有限元分析的电磁模型要比基于电路理论的模型更为精确,然后介绍了部分磁芯谐振变压器,并使用等效电路模型解释了其特性。开发了一种在谐振操作下测量绕组电感的方法,并用于研究两种不同调谐方法的特性。通过采用全芯壳式变压器模型,建立了部分磁芯谐振变压器的有限元模型,该模型结果与三个样品变压器的实测电感变化特性精确匹配,并预测了两个轴向上铁芯饱和的开始偏移和中心间隙的安排。提出了一种新的分芯谐振变压器设计,具有替代的芯和绕组布局以及多个绕组抽头。扩展了有限元模型以适应新设计,并开发了分析工具框架。开发了具有固定电感的部分磁芯谐振变压器的通用设计方法。应用了多种设计方法来针对给定的一组规范和限制获得最佳设计。然后将设计方法扩展到具有可变电感的器件。给出了三个具有可变电感的部分铁芯谐振变压器的设计实例。在前两个设计示例中,替换了现有设备。新的变压器设计明显更轻,并且消除了饱和效应。第三个设计示例是用于高压测试的套件,可以测试新西兰的任何水轮发电机定子。该套件在实验室内构建和测试,证明了其设计能力。还提出了其他重要的测试结果,但尚未开发出任何模型。通过采用替代的磁芯构造方法,可以降低磁芯中的热效应,该方法是将叠片径向堆叠,而不是沿通常的平行方向堆叠。新的套件尚未在现场使用。

著录项

  • 作者

    Bell Simon Colin;

  • 作者单位
  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 en
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