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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >The Optimization Design of Sound Arrester for the Dry Type Air Core Smoothing Reactor Based on the Multi-Physical Field Coupling Method
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The Optimization Design of Sound Arrester for the Dry Type Air Core Smoothing Reactor Based on the Multi-Physical Field Coupling Method

机译:基于多物理场耦合方法的干型空气芯平滑反应器的声音捕捉器的优化设计

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摘要

In this paper, according to the parameters of the dry type air core smoothing reactor, the stress-sound field and fluid-temperature field coupling simulation model is established, the detailed temperature field and sound field distribution are obtained, and the influence law of sound arrester on the sound pressure level and temperature rise are analyzed. It can be found that the temperature rise of encapsulation coils are significantly increased when adding the sound arrester, and the reasons are given by analyzing the fluid velocity in the air ducts. Meanwhile, the optimization design method about sound arrester is proposed based on the orthogonal experiment design and finite element method. The influence curve and contribution rate of sound arrester on the pressure level and temperature rise are analyzed, and the optimal structural parameters of the sound arrester are obtained. The results show that the optimization method can significantly reduce the temperature rise and sound pressure level simultaneously, and improving the operational reliability of the smoothing reactor. (c) 2021 Institute of Electrical Engineers of Japan. Published by Wiley Periodicals LLC.
机译:在本文中,根据干型空气芯平滑反应堆的参数,建立了应力 - 响应场和流体温度场耦合模拟模拟模型,获得了详细的温度场和声场分布,并且声音的影响定律分析了声压水平和温度升高的ARRESTER。可以发现,添加声音架时,封装线圈的温度升高会显着增加,并且通过分析气管中的流体速度给出了原因。同时,基于正交实验设计和有限元方法提出了有关声音捕捉器的优化设计方法。分析了在压力水平和温度升高上的影响曲线和贡献率,并获得了声音驱动器的最佳结构参数。结果表明,优化方法可以同时显着降低温度升高和声音压力水平,并提高平滑反应器的操作可靠性。 (c)2021日本电气工程师研究所。由Wiley Wendericals LLC出版。

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