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The effect of damping in isolation system on the performance of base-isolated system

机译:隔离系统阻尼对基础隔离系统性能的影响

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The use of base isolation to protect a structure and its contents from earthquake damage has proven to be an effective antiseismic strategy during past earthquakes. Modelling of the isolation system is one of the key steps in understanding the response of the structure and more importantly to evaluate the effectiveness of the isolation system. This paper presents a study on the effect of damping in an isolation system using a linear spring and linear viscous damper to model the response of the isolated superstructure. Although this model may not be representative of the mechanical behaviour of a real isolation system, most nonlinear systems can be linearised in some form to provide an estimate to the response and thus the use of this model in this study. From the floor response spectra of the roof mass, the increase in damping in the isolation system leads to the excitation of response in higher modes. The floor response spectra also show that the effectiveness of isolation reduces with increasing damping in the isolation system and could be detrimental to the contents of the building. The bilinear model, also the basis of design codes such as the ASCE 7-16, is used in this study to model isolators. The analysis using the bilinear model with various design scenarios shows that the model delivers a significant amount of damping into the system when the system is experiencing regular intensity earthquake events. The presence of a high damping ratio in the isolation system, as in the linear model, excites the higher modes thus counteracts the objective of base isolating a structure. The paper concludes with a comparison of the isolator displacement estimated using the design code and the average response obtained through dynamic analyses. The difference between the displacement values is not large.
机译:使用碱隔离以保护结构及其在地震损伤中的内容物已经被证明是在过去地震过程中成为一种有效的抗裂伤策略。隔离系统的建模是了解结构响应的关键步骤之一,更重要的是评估隔离系统的有效性。本文介绍了使用线弹簧和线性粘性阻尼器阻尼在隔离系统中的效果的研究,以模拟孤立的上部结构的响应。尽管该模型可能不代表真实隔离系统的力学行为,但大多数非线性系统可以以某种形式线性化以提供对响应的估计,从而在本研究中使用该模型。从屋顶物质的地板响应光谱,隔离系统中的阻尼的增加导致响应更高模式的激发。地板响应光谱还表明隔离系统中的隔离有效性减少了减少,并且对隔离系统的阻尼可能是有害的建筑物内容物。双线性模型,也是asce 7-16等设计代码的基础,在本研究中使用了模型隔离器。使用具有各种设计方案的双线性模型的分析表明,当系统遇到常规强度地震事件时,该模型可提供大量的阻尼进入系统。在隔离系统中存在高阻尼比,如在线性模型中,激发较高模式,因此抵消了基础隔离结构的目标。本文结束了使用设计代码估计的隔离器位移和通过动态分析获得的平均响应的比较。位移值之间的差异不大。

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