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Shaking table experimental study on damage mechanism of the disconnecting switch under seismic excitation

机译:震动震动下断开开关损伤机理的摇摆实验研究

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The efficiency of the energetic network is a very import safety issue in the region experienced by the earthquake. High voltage disconnecting switches are important elements of the energetic infrastructure used to separate electric circuits (i.e. during repairs), which should not be damaged remaining fully operational. The aim of the paper is to show the results of the shaking table experimental investigation focused on damage mechanism of a high voltage disconnecting switch under seismic excitation. The real example of the two-column pantograph-type disconnecting switch was considered in the study. First, the tests were carried out by exciting the unit with the sweep-sine function. Based on the results, the structural dynamic properties of undamaged structure (natural frequencies, damping ratios) could be determined. Then, the so called rumbling seismic tests were conducted in order to determine the seismic strength of disconnecting switch according to the standards PN-EN 60068-3-3. After each experiment, the sweep-sine test was carried out so as to check the decrease in the natural frequencies of the unit. The results of the study show that the lower parts of the columns, which serve as isolators, are the most critical locations of the disconnecting switch considered. The unit was damaged due to failure of one of the rotational mechanisms installed at the bottom of columns.
机译:精力量网络的效率是地震所经历的地区的进口安全问题。高压断开开关是用于分离电路的能量基础设施的重要元素(即在维修期间),这不应损坏剩余的完全运行。本文的目的是展示振动台实验研究的结果,其专注于地震激发下高压断开开关的损伤机理。在该研究中考虑了两柱容粉型断开开关的实例。首先,通过用扫描正弦函数激励单元来进行测试。基于结果,可以确定未损坏结构(自然频率,阻尼比)的结构动态特性。然后,进行所谓的隆隆地震检验,以确定根据标准的PN-EN 60068-3-3断开开关的地震强度。在每个实验之后,进行扫描正弦测试以检查装置的自然频率的降低。研究结果表明,作为隔离器的柱的下部是所考虑的断开开关的最关键位置。由于安装在列底部的旋转机构之一失效,该装置损坏。

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