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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Experimental Design and Test of 100 kV Extra High Voltage Prototype Bushing With ${rm CF}_{4}$ as Insulation Gas for Superconducting Equipment
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Experimental Design and Test of 100 kV Extra High Voltage Prototype Bushing With ${rm CF}_{4}$ as Insulation Gas for Superconducting Equipment

机译:$ {rm CF} _ {4} $作为超导设备绝缘气体的100 kV超高压原型套管的实验设计和测试

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摘要

One of the critical matters yet to be solved for commercial applications of extra high voltage superconducting devices is the optimum design and development of high voltage cryogenic bushings which could withstand both severe insulation requirements and a steep temperature gradient due to the cryogenic environment. Neither conventional extra high voltage bushings insulated by ${rm SF}_{6}$ gas nor composite materials are directly applicable to cryogenic bushings due to an extremely low temperature environment. In order to obtain suitable dielectric performance of bushings in the cryogenic environment, we focused on an alternative insulation gas instead of ${rm SF}_{6}$ such as ${rm CF}_{4}$, which shows excellent dielectric performance under extremely low temperatures, and also on the optimum design of cryogenic bushings, which have a longer creepage distance compared to conventional bushings. In this paper, design factors of cryogenic bushings were discussed, and test results of 60 and 100 kV extra high voltage prototype bushings were discussed in detail. Consequently, it was possible to obtain satisfactory results to verify the insulation level of newly designed extra high voltage cryogenic prototype bushings for superconducting electric power applications.
机译:对于超高压超导设备的商业应用,尚未解决的关键问题之一是高压低温套管的优化设计和开发,该套管可承受严苛的绝缘要求和由于低温环境而导致的陡峭温度梯度。由于温度环境极低,用$ {rm SF} _ {6} $气体绝缘的常规超高压套管或复合材料都不能直接应用于低温套管。为了在低温环境中获得合适的套管绝缘性能,我们专注于替代绝缘气体来代替$ {rm SF} _ {6} $,例如$ {rm CF} _ {4} $,这显示了出色的绝缘性能在极低温下的性能,以及低温衬套的最佳设计,与常规衬套相比,其具有更长的爬电距离。本文讨论了低温套管的设计因素,并详细讨论了60和100 kV超高压原型套管的测试结果。因此,有可能获得令人满意的结果,以验证用于超导电力应用的新设计的超高压低温原型套管的绝缘水平。

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