闫维明, 戴颖楠, 陈适才, 孙运轮. 核电厂整体基础隔震体系的振动台试验研究[J]. 北京工业大学学报, 2018, 44(12): 1513-1520. DOI: 10.11936/bjutxb2017060048
    引用本文: 闫维明, 戴颖楠, 陈适才, 孙运轮. 核电厂整体基础隔震体系的振动台试验研究[J]. 北京工业大学学报, 2018, 44(12): 1513-1520. DOI: 10.11936/bjutxb2017060048
    YAN Weiming, DAI Yingnan, CHEN Shicai, SUN Yunlun. Shaking Table Test of a Base-isolated Nuclear Power Plant[J]. Journal of Beijing University of Technology, 2018, 44(12): 1513-1520. DOI: 10.11936/bjutxb2017060048
    Citation: YAN Weiming, DAI Yingnan, CHEN Shicai, SUN Yunlun. Shaking Table Test of a Base-isolated Nuclear Power Plant[J]. Journal of Beijing University of Technology, 2018, 44(12): 1513-1520. DOI: 10.11936/bjutxb2017060048

    核电厂整体基础隔震体系的振动台试验研究

    Shaking Table Test of a Base-isolated Nuclear Power Plant

    • 摘要: 为了解决基础隔震技术在核电工程中的应用问题,以某高温气冷堆核电厂房结构为背景,通过1:20缩尺模型地震模拟振动台试验,研究了水平双向和三向地震动作用下水平整体基础隔震核电结构(含设备)的地震响应规律和特点,包括结构的加速度和位移反应、楼层反应谱和设备反应以及隔震效果等.结果表明:隔震结构的前二阶振型为水平双向平动,且变形主要集中在隔震层,上部结构近于平动;考虑竖向输入后结构水平向加速度放大系数是水平双向输入的2~3倍,且竖向加速度响应较大;水平向楼层反应谱峰值远小于竖向,三向输入的竖向楼层反应谱峰值大于双向输入;设备与结构的反应规律和特点基本相似.总之,水平向隔震可以有效降低结构和设备的水平向地震反应,但对竖向反应基本无减震效果,且竖向地震动作用可能降低水平向隔震效果.

       

      Abstract: To solve the application of base isolation technology in nuclear power, based on the structure of a high temperature gas-cooled reactornuclear power plant, a 1:20 scale model earthquake simulation shaking table test was conducted to study the earthquake response rules and characteristics of horizontal bi-directional and three-directional earthquakes on the horizontal isolated nuclear structure (including equipment), including the structure of the acceleration and displacement response and floor response spectrum, equipment response, and isolation effect. Results show that the first two modes of the isolated structure are horizontal translation, the deformation is mainly concentrated in the isolation layer, and the superstructure is nearly translational. Considering the vertical input, the acceleration amplification factor in the structual horizontal direction is 2-3 times the horizontal two-way input, and the vertical acceleration response larger. The horizontal peak is much smaller than the vertical peak of the floor response spectrum, and the three-way input peak is larger than the two-way input peak of the vertical response spectrum. The earthquake reaction of the equipment are basically similar to the structure. In short, the horizontal isolation can effectively reduce the horizontal seismic response of the structure and equipment, however, has no damping effect on the vertical response, and the vertical seismic action may reduce the horizontal isolation effect.

       

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