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Electric field calculation and optimization of the UHVDC converter valve shield case

机译:特高压直流换流阀屏蔽罩的电场计算与优化

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The converter valve is one of the key equipments in the ultra-high voltage direct current (UHVDC) transmission systems. Shield case design is an important part in the process of converter valve design, appropriate shield case configuration can improve the electric field distribution of converter valve, extend the service life and enhance the long-term operation reliability of the UHVDC systems. In this paper, an electric field distribution equivalent calculation model of the double converter valve was discussed, and a 3-D transient calculation model of ±800 kV double converter valve was established by using a finite element method (FEM) analysis software ANSYS. The calculation results of potential and electric field distribution of the double converter valve were presented, the law of electric field distribution of the shield cases which run on different working conditions and locate in different positions of the double converter valve was revealed, the effect of electric field and potential distribution of different shield cases configuration schemes was discussed, and an optimal scheme was put forward. Verified by the computer simulation, the optimal scheme satisfied the external insulation and electromagnetic environment requirements of the double converter valve. The results provide an important basis on the design of the UHVDC double converter valve.
机译:换向阀是超高压直流(UHVDC)传输系统中的关键设备之一。屏蔽箱设计是换流阀设计过程中的重要组成部分,适当的屏蔽箱配置可以改善换流阀的电场分布,延长使用寿命,提高特高压直流系统的长期运行可靠性。本文讨论了双转换阀的电场分布等效计算模型,并利用有限元分析软件ANSYS建立了±800 kV双转换阀的3-D瞬态计算模型。给出了双转换阀电位和电场分布的计算结果,揭示了在不同工作条件下运行并位于双转换阀不同位置的屏蔽罩的电场分布规律,揭示了电转换的效果。讨论了不同屏蔽盒配置方案的场和势分布,并提出了一种优化方案。通过计算机仿真验证,该优化方案满足了双转换阀的外部绝缘和电磁环境要求。研究结果为特高压直流双转换阀的设计提供了重要依据。

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