Analysis and verification of electrodynamic force, thermal stress and current sharing for CRAFT converter structure design

Zhongma Wang, Chaoyi Shi, Xiuqing Zhang, Wenwu Lu, Sheng Zhang, Xianhe Gao, Tao Xu, XingXing Shao, Liansheng Huang
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Abstract

In the design realm of fusion power supplies, structural component plays a pivotal role in ensuring the safety of fusion device. To verify the reliability of converter structure design in Comprehensive Research Facility for Fusion Technology (CRAFT), the meticulous analysis of the converter's dynamic impact is carefully analyzed based on the worst fault current (400 kA), firstly. Subsequently, the thermal stress analysis based on maximum allowable steady-state temperature is finished, and the equivalent thermal stress, thermal deformation, maximum shear stress of single bridge arm and whole converter are studied. Furthermore, a simple research method of current sharing characteristics of bridge arm with multi-thyristor parallel connection is proposed by combination Simplorer with Q3D in ANSYS. The results show that the current sharing characteristics is great. Finally, the structural design has been meticulously tailored to meet the established requirements.
用于 CRAFT 转换器结构设计的电动力学力、热应力和电流分担分析与验证
在聚变电源的设计领域,结构部件对确保聚变装置的安全性起着举足轻重的作用。为了验证聚变技术综合研究装置(CRAFT)中变流器结构设计的可靠性,首先基于最恶劣的故障电流(400 kA)对变流器的动态影响进行了细致的分析。随后,完成了基于最大允许稳态温度的热应力分析,研究了单桥臂和整个变流器的等效热应力、热变形和最大剪应力。此外,通过在 ANSYS 中结合 Simplorer 和 Q3D,提出了一种研究多晶闸管并联桥臂分流特性的简单方法。结果表明,分流特性非常好。最后,结构设计经过精心定制,满足了既定要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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