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Seismic evaluation of ±800 kV UHVDC disconnect switch by shake table test

机译:摇动台测试造成±800 kV UHVDC断开开关的地震评价

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Disconnect switches, the widely used electrical substation apparatuses, however, were severely damaged in several earthquakes, causing huge economic losses. Disconnect switches with higher voltage are more vulnerable to earthquake for their great height and flexibility. The interaction between posts and blades might magnify the seismic responses, which is not fully understood and deserves further investigations. Therefore, a full-scale shake table test on a new-style latticed ±800 kV ultra-high voltage direct current disconnect switch was carried out to evaluate its dynamic properties and seismic responses. Two different operational conditions with the main blade open and closed were tested, respectively. Interaction between posts and blades was studied via acceleration amplification factors and the spectrum analysis. The test result indicates interaction only exists in the length direction, and will amplify seismic responses of the post with the main blade, while reduce those of the post with the fixed contact. Moreover, the seismic responses of specimen are smaller than those in previous studies, suggesting the latticed structural form alleviate the negative effects induced by the great height and flexibility, and is helpful for structural design of disconnect switches.
机译:然而,断开开关,广泛使用的电气变电站在几个地震中严重受损,导致巨大的经济损失。断开带有更高电压的开关更容易受到地震的影响,以实现其高度和灵活性。柱子和叶片之间的相互作用可能会放大地震响应,这不完全理解并且应该得到进一步的研究。因此,对新型刹车±800 kV超高压直流断开开关进行了全尺寸摇动台测试,以评估其动态性能和地震响应。测试了两个不同的操作条件,分别打开和关闭主刀片。通过加速放大因子和频谱分析研究了柱子和叶片之间的相互作用。测试结果表明相互作用仅存在于长度方向上,并将柱子的震动响应放大主刀片,同时减少固定触点的柱子。此外,样本的地震反应小于先前研究中的震作,表明格子结构形式减轻了较大的高度和灵活性引起的负面影响,并且有助于断开开关的结构设计。

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