首页> 外文期刊>Journal of Pressure Vessel Technology >Motion Analysis of Pendulum Type Isolation Systems During Earthquakes (Probabilistic Study of Isolation Performance of Base Isolated Structure Considering Characteristic Dispersion of Pendulum Type Isolation Systems)
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Motion Analysis of Pendulum Type Isolation Systems During Earthquakes (Probabilistic Study of Isolation Performance of Base Isolated Structure Considering Characteristic Dispersion of Pendulum Type Isolation Systems)

机译:摆式隔震系统在地震中的运动分析(考虑摆式隔震系统的特征色散的基础隔震结构隔震性能的概率研究)

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摘要

Most of the base isolated buildings or structures are built on laminated rubber bearings in order to give them certain natural periods. This situation, however, also encourages structural engineers to research and develop nonrubber-type isolation systems such as linear motion bearing isolators and friction pendulum systems. It is considered that the nonrubber-type isolation systems can be applied to important industrial facilities, such as LNG tanks, boiler facilities, and so on, to refine their seismic reliabilities. This device of a nonrubber-type isolation system uses the energy loss associated with sliding to reduce the deleterious effects of earthquakes. However, when using nonrubber-type isolation systems with sliding in the atmosphere, long term durability of the systems must be taken into account. It may be difficult to maintain the friction coefficient of the system. In this paper, a stochastic study of the effect on rotational motion and isolation performance of two structures subjected to an earthquake with a friction pendulum bearing is analyzed with a Monte Carlo method.
机译:大多数基础隔离建筑物或结构均建在层压橡胶轴承上,以使它们具有一定的自然周期。但是,这种情况也鼓励结构工程师研究和开发非橡胶型隔离系统,例如线性运动轴承隔离器和摩擦摆系统。人们认为,非橡胶型隔离系统可以应用于重要的工业设施,例如LNG储罐,锅炉设施等,以提高其抗震可靠性。非橡胶型隔离系统的这种设备利用与滑动相关的能量损失来减少地震的有害影响。但是,当使用在大气中滑动的非橡胶型隔离系统时,必须考虑该系统的长期耐用性。维持系统的摩擦系数可能很困难。本文采用蒙特卡洛方法,对摩擦摆轴承对两个结构的旋转运动和隔震性能的影响进行了随机研究。

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