负载断开开关温升

E. Fjeld, W. Rondeel, M. Saxegaard
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引用次数: 4

摘要

在紧凑型中压开关设备中,空气是不太环保的SF6的理想替代品。然而,空气的热性能差,需要更好的热设计,以保持温升在允许的工业限制内,以避免过早的开关退化。本出版物的重点是不同设计的负载断开开关(LBS)的温升。研究发现,具有柔性编织的LBS比具有滑动接触的LBS具有更高的温升。研究表明,剥离开关(只有电流路径)可以与经验确定的传热系数一起用于预测LBS关键部件的温升。作为散热器的铝结构元素对LBS的温升有巨大的影响,当用空气代替SF6时,可以利用这一点的设计元素可能很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature rise in a load break switch
Air is a desirable alternative to the less environmental friendly SF6 in compact medium voltage switchgear. However, the poor thermal properties of air requires better thermal designs to keep the temperature rise within the allowable industry limits to avoid premature switch degradation. This publication focuses on the temperature rise of load break switches (LBS) of different designs. A LBS with flexible braid was found to have considerably higher temperature rise than a design with the sliding contact. The study has shown that a stripped switch (with only the current path) can be used together with empirical determined heat transfer coefficients in a first approach for predicting the temperature rise of the critical parts of the LBS. Aluminum construction elements functioning as heat sinks had a huge impact on the temperature rise of the LBS, and design elements that can utilize this might be important when replacing SF6 with air.
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