首页> 外文会议>International Conference on Nuclear Engineering >STUDY ON SEISMIC ISOLATION AND HI-FREQUENCY VIBRATION ISOLATION TECHNOLOGY FOR EQUIPMENT IN NUCLEAR POWER PLANT USING AERO FLOATING TECHNIQUE
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STUDY ON SEISMIC ISOLATION AND HI-FREQUENCY VIBRATION ISOLATION TECHNOLOGY FOR EQUIPMENT IN NUCLEAR POWER PLANT USING AERO FLOATING TECHNIQUE

机译:航空浮动技术核电站设备地震隔离和高频隔振技术研究

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In Japan, most structures on the ground surface need seismic countermeasures because of frequently earthquakes. On the other hand, vibration isolation devices are applied to precision or important equipment in several facilities that dislikes vibration in order to reduce daily vibration. In general, vibration isolation devices are intended for high frequency and small amplitude range. However, it is difficult to cut off both vibration region caused by flying object collision and seismic motion with existing technologies. The authors propose insulation of equipment and vibration transmitted through the floor by floating equipment, and have. We have devised and built an air floating device that operates when a trigger input is applied to save the energy of this dynamically acting device. It was estimated by numerical calculation that the aero floating device keeps lifting stably in the condition with the air pressure in the auxiliary air chamber about 75 to 80 kPa. The performance specifications of the proposed device were verified from shaking table test. As a result, the effect of reducing the maximum acceleration by about 15 against the seismic motion of El Centro NS, Taft NS, Tohoku NS, and Hachinohe EW was confirmed by floating the mass on the frame assuming the equipment. From the obtained power spectrum diagram (PSD) of the response acceleration, it was confirmed that all frequency components up to 25 Hz is reduced by using proposed aero floating base isolation device.
机译:在日本,地面的大多数结构需要由于频繁地震而需要地震对策。另一方面,振动隔离装置适用于若干设施中的精密或重要设备,以减少日常振动。通常,振动隔离装置适用于高频和小幅度范围。然而,很难切断由飞行物体碰撞和具有现有技术的地震运动引起的振动区域。作者提出了通过浮动设备通过地板传输的设备和振动的绝缘,并且具有。我们设计并建造了一个空气浮动装置,当应用触发输入时运行,以节省该动态作用设备的能量。通过数值计算估计,即航空浮动装置在辅助空气室中的气压中保持稳定地提升约75至80kPa。验证了所提出的设备的性能规范从摇耳表测试验证。结果,通过漂浮在框架上假设设备上的质量确认了通过框架上的质量来确认将大约15的最大加速度降低约15的抗震运动的效果。从所获得的功率谱图(PSD)的响应加速度,通过使用所提出的Aero浮动基底隔离装置,证实了高达25Hz的所有频率分量。

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