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Seismic performance improvement of a slender composite ultra-high voltage bypass switch using assembled base isolation

机译:使用组装底座隔离的细长复合超高压旁通开关的地震性能改进

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Since the seismic performance of the bypass switch (BPS) cannot satisfy the stress safety factor requirement, an isolated combination of wire ropes with linear viscous dampers was employed. The assembled base isolation was designed using modal parameters, and the effectiveness of the isolation was validated numerically using finite element (FE) analysis and experimentally by the shaking table test. The numerical study shows that wire rope isolation can reduce the stress of a BPS considerably. Furthermore, the implementation of supplementary viscous dampers can further reduce the stress and, more importantly, displacement response, which is significant for UHV equipment. The middle section of BPS generates obvious high frequency vibration during test, although the root section still experiences the maximum stress response. Besides, testing verified the reliability of the FE model and confirmed that the stress safety factor requirement was satisfied. Therefore, the isolation comprised of wire ropes and a viscous damper is proposed to improve the seismic performance of the slender 800 kV composite BPS.
机译:由于旁路开关(BPS)的地震性能不能满足应力安全系数要求,因此采用了线绳的隔离组合,具有线性粘性阻尼器。使用模态参数设计组装的基底隔离,并且使用有限元(FE)分析和通过振动台测试进行实际验证隔离的有效性。数值研究表明,钢丝绳隔离可以显着降低BPS的应力。此外,补充粘性阻尼器的实施可以进一步降低应力,更重要的是,对于UHV设备具有重要意义。在测试期间,BPS的中间部分产生明显的高频振动,尽管根部仍然经历最大应力响应。此外,测试验证了FE模型的可靠性并确认满足压力安全系数要求。因此,提出了由绳索和粘性阻尼器组成的隔离,以改善细长800kV复合BPS的地震性能。

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