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Application of Heat Pipe Technology on Averaging Temperature of UHV Converter Valve-Side Bushing

机译:热管技术在特高压换流器阀侧衬套平均温度中的应用

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As a critical component of UHV converter transformer, the converter valve-side bushing plays a vital role in connecting HVAC and HVDC systems. Due to the poor radial heat dissipation of the UHV converter valve-side bushing, the overall temperature and electric field distribution are incredibly uneven, especially under the condition of high ambient temperature and heavy load. To improve the temperature distribution and transmission capacity of the UHV converter valve-side bushing, we proposed the heat pipe method of averaging temperature, whose main principle is to realize superconductivity by using the phase-change effect of working medium. An electro-thermal-fluid coupled simulation model considering phase-change effect is established for a ±500 kV converter valve-side bushing. Corresponding electric field distribution and temperature distribution are obtained under conditions of different carrying current. The results show that the conductor structure of the UHV converter valve-side bushing perfectly conforms to the structure of the heat pipe. Besides, the application of heat pipe technology can significantly reduce the hot spot temperature, average the axial temperature, and increase the current-carrying capacity of the UHV converter valve-side bushing.
机译:作为特高压换流变压器的重要组成部分,换流阀侧衬套在连接HVAC和HVDC系统中起着至关重要的作用。由于UHV换流器阀侧衬套的径向散热不良,因此总体温度和电场分布非常不均匀,特别是在高环境温度和高负载条件下。为了提高特高压换流阀侧衬套的温度分布和传递能力,提出了平均温度的热管法,其主要原理是利用工作介质的相变效应实现超导。针对±500 kV换流阀侧衬套,建立了考虑相变效应的电热流体耦合模拟模型。在不同载流条件下,可获得相应的电场分布和温度分布。结果表明,特高压换流阀侧衬套的导体结构与热管结构完全吻合。此外,热管技术的应用可以显着降低热点温度,平均轴向温度,并增加特高压换流阀侧衬套的载流量。

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