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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Probabilistic analysis of seismically isolated elevated liquid storage tank using multi-phase friction bearing
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Probabilistic analysis of seismically isolated elevated liquid storage tank using multi-phase friction bearing

机译:多相摩擦轴承隔震高架储液罐的概率分析

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Multiple level performance of seismically isolated elevated storage tank isolated with multi-phase friction pendulum bearing is investigated under totally 60 records developed for multiple level seismic hazard analysis (SLE, DBE and MCE). Mathematical formulations involving complex time history analysis have been proposed for analysis of typical storage tank by multi-phase friction pendulum bearing. Multi-phase friction pendulum bearing represent a new generation of adaptive friction isolation system to control super-structure demand in different hazard levels. This isolator incorporates four concave surfaces and three independent pendulum mechanisms. Pendulum stages can be set to address specific response criteria for moderate, severe and very severe events. The advantages of a Triple Pendulum Bearing for seismic isolation of elevated storage tanks are explored. To study seismic performance of isolated elevated storage tank with multi-phase friction pendulum, analytical simulations were performed with different friction coefficients, pendulum radii and slider displacement capacities.
机译:在针对多级地震危害分析(SLE,DBE和MCE)开发的总共60条记录下,研究了使用多相摩擦摆轴承隔离的地震隔离高架储罐的多级性能。对于多相摩擦摆轴承对典型储罐的分析,提出了涉及复杂时程分析的数学公式。多相摩擦摆式轴承代表了新一代的自适应摩擦隔离系统,可以在不同的危险等级下控制对上部结构的需求。该隔离器包含四个凹面和三个独立的摆锤机构。可以设置钟摆阶段以解决针对中度,严重和非常严重事件的特定响应标准。探索了三重摆式轴承在高架储罐的隔震方面的优势。为了研究具有多相摩擦摆的隔离式高架储罐的抗震性能,在不同的摩擦系数,摆半径和滑块位移能力下进行了分析模拟。

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