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Evaluation of MCC seismic response according to the frequency contents through the shake table test

机译:根据摇动台测试的频率内容评估MCC地震响应

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摘要

Damage to nuclear power plants causes human casualties and environmental disasters. There are electrical facilities that control safety-related devices in nuclear power plants, and seismic performance is required for them. The 2016 Gyeongju earthquake had many high-frequency components. Therefore, there is a high possibility that an earthquake involving many high frequency components will occur in South Korea. As such, it is necessary to examine the safety of nuclear power plants against an earthquake with many high-frequency components. In this study, the shaking table test of electrical facilities was conducted against the design earthquake for nuclear power plants with a large low-frequency components and an earthquake with a large high-frequency components. The response characteristics of the earthquake with a large high-frequency components were identified by deriving the amplification factors of the response through the shaking table test. In addition, safety of electrical facility against the two aforementioned types of earthquakes with different seismic characteristics was confirmed through limit-state seismic tests. The electrical facility that was performed to the shaking table test in this study was a motor control center (MCC).
机译:核电站损坏导致人类伤亡和环境灾害。有电气设施控制核电站的安全相关设备,并为它们提供地震性能。 2016年京州地震有许多高频成分。因此,韩国将发生涉及许多高频分量的地震的可能性很高。因此,有必要检查核电站与许多高频分量的地震的安全性。在这项研究中,电气设施的振动台测试是针对核电站的设计地震进行了大的低频分量和具有大高频分量的地震的地震。通过通过振动台测试导出响应的放大因子来识别出地震的响应特性。此外,通过极限状态的地震检验确认了电气设施对两种具有不同地震特性的两种地震的安全性。在本研究中对摇动台测试进行的电气设施是电机控制中心(MCC)。

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