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Influence of Box-in Structure on Heat Dissipation Performance of UHV Converter Transformer

机译:箱体结构对UHV转换器变压器散热性能的影响

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The Box-in structure is a structure used to reduce the noise effect of the converter transformer, but it also brings about the problem of reduced heat dissipation performance of the converter transformer. To study influences of Box-in structure on the heat dissipation and temperature distribution of Ultra-High Voltage(UHV) converter transformers so as to guide the heat dissipation of converter transformer and ensure its safe and stable operation, the following workwas done in this paper: Based on the finite element principle, the commercial software COMSOL was used to establish the electromagnetic-thermal-flow field simulation model of the converter transformer and its surrounding environment. Then, the influence of the Box-in structure on the temperature rise of the converter transformer and its surrounding environment under different ambient wind speeds was analyzed. After the above work, the following conclusions were obtained: the existence of the box-in structure significant reduces the convection heat dissipation capacity of the converter transformer box wall, resulting in that when the converter transformer with Box-in structure is compared with the one without Box-in structure, its average box wall temperature is 3.7K higher, and the local temperature is 7.7-17.55K higher; the hot-spot temperature rise of the converter transformer box wall decreases with the increase of ambient wind speeds. The research results obtained in this paper can be used to guide the heat dissipation of the box-in structure UHV converter transformer to ensure its stable operation.
机译:箱式结构是用于降低转换器变压器的噪声效果的结构,但它还带来了转换器变压器的减少散热性能的问题。为了研究箱体结构对超高压(UHV)转换器变压器散热和温度分布的影响,以引导转换器变压器的散热,确保其安全稳定的操作,在本文中完成了以下工作:基于有限元原理,商业软件COMSOL用于建立转换器变压器及其周围环境的电磁热流场仿真模型。然后,分析了箱式结构对转换器变压器温度升高的影响及其在不同环境风速下的周围环境。在上述工作之后,获得了以下结论:箱式结构的存在显着降低了转换器变压器箱墙的对流散热能力,从而当与箱式结构的转换器变压器与箱体相比相比没有箱式结构,其平均箱壁温度高出3.7K,局部温度高7.7-17.55K;随着环境风速的增加,转换器变压器箱壁的热点温度升高降低。本文获得的研究结果可用于引导箱式结构UHV转换器变压器的散热,以确保其稳定运行。

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