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Seismic response prediction for cabinets of nuclear power plants by using impact hammer test

机译:冲击锤试验在核电站内阁地震反应预测中的应用

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摘要

An effective method to predict the seismic response of electrical cabinets of nuclear power plants is developed. This method consists of three steps: (1) identification of the earthquake-equivalent force based on the idealized lumped-mass system of the cabinet, (2) identification of the state-space equation (SSE) model of the system using input-output measurements from impact hammer tests, and (3) seismic response prediction by calculating the output of the identified SSE model under the identified earthquake-equivalent force. A three-dimensional plate model of cabinet structures is presented for the numerical verification of the proposed method. Experimental validation of the proposed method is carried out on a three-story frame which represents the structure of a cabinet. The SSE model of the frame is accurately identified by impact hammer tests with high fitness values over 85% of the actual frame characteristics. Shaking table tests are performed using El Centro, Kobe, and Northridge earthquakes as input motions and the acceleration responses are measured. The responses of the model under the three earthquakes are predicted and then compared with the measured responses. The predicted and measured responses agree well with each other with fitness values of 65-75%. The proposed method is more advantageous over other methods that are based on finite element (FE) model updating since it is free from FE modeling errors. It will be especially effective for cabinet structures in nuclear power plants where conducting shaking table tests may not be feasible. Limitations of the proposed method are also discussed.
机译:提出了预测核电厂电气柜地震反应的有效方法。该方法包括三个步骤:(1)基于理想的柜体集总质量系统识别地震等效力;(2)使用输入输出识别系统的状态空间方程(SSE)模型通过冲击锤测试进行测量,以及(3)通过在确定的地震等效力下计算所确定的SSE模型的输出来预测地震响应。提出了橱柜结构的三维板模型,对所提方法进行了数值验证。对代表机柜结构的三层框架进行了实验验证。框架的SSE模型是通过冲击锤测试准确识别的,其高适应性值超过实际框架特征的85%。使用El Centro,神户和Northridge地震作为输入运动进行振动台测试,并测量加速度响应。预测模型在三场地震下的响应,然后将其与实测响应进行比较。预测和测量的响应彼此相符,适应度值为65-75%。所提出的方法比其他基于有限元(FE)模型更新的方法更具优势,因为它没有FE建模错误。对于可能无法进行振动台测试的核电厂柜体结构,这将特别有效。还讨论了所提出方法的局限性。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2010年第10期|p.2500-2511|共12页
  • 作者单位

    Department of Civil and Structural Engineering, University of Sheffield, Sheffield, UK;

    JACE KOREA, Gyeonggi-do, Korea;

    Department of Civil Engineering, Kunsan National University, Jeonbuk, Korea;

    Department of Civil Engineering, Kunsan National University, Jeonbuk, Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:44:59

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