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Analytical Study on the Dynamic Properties of Viscoelastically Coupled Shear Walls in High-Rise Buildings

机译:高层建筑粘接耦合剪力墙动态特性的分析研究

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An innovative method of using viscoelastic (VE) dampers as coupling members between reinforced concrete shear walls has been recently developed for enhancing the wind performance and seismic resilience of tall buildings. Although three-dimensional finite-element models are used for the final design of such systems, fundamental analytical models that can be used to gain broader insights into their dynamic response have not yet been developed. Therefore, in this paper a sixth-order partial differential equation governing the dynamic properties of tall shear walls coupled using VE dampers is derived by explicitly taking into account the stiffness of the connecting elements as well as that of the slab directly above the dampers. The governing equation is solved numerically using the Taylor series expansion method and the periods and added damping ratios in various modes of vibration are evaluated. It is found that for given frequency independent VE material properties, the added damping ratios of such systems are independent of the mass of the building. Analyses using a commercially available VE damper by taking into account the frequency dependency of the VE material revealed that progressively higher maximum damping ratios are achieved in higher modes of vibration. Based on the conclusions derived through the analytical formulation, recommendations are provided for enhancing the efficiency of VE dampers in tall buildings. (C) 2017 American Society of Civil Engineers.
机译:最近开发了一种使用粘弹性(VE)阻尼器作为钢筋混凝土剪力墙之间的联轴器构件的创新方法,用于提高高层建筑的风力性能和地震弹性。虽然三维有限元模型用于这些系统的最终设计,但尚未开发出可用于获得更广泛的乐趣的基本分析模型尚未开发出更广泛的见解。因此,在本文中,通过明确地考虑连接元件的刚度以及直接在阻尼器上方的平板的刚度来得出控制使用VE阻尼器耦合的高剪力壁的动态特性的第六级偏微分方程。用泰勒序列扩展方法和各种振动模式的周期和增加的衰减比例进行了数量地解决了控制方程。结果发现,对于给定的频率独立的VE材料特性,这种系统的增加的阻尼比与建筑物的质量无关。通过考虑到VE材料的频率依赖性,通过商业上可获得的VE DAMPER分析显示,在更高的振动模式下,实现了逐步更高的最大阻尼比率。根据通过分析制定的得出得出的结论,提供了提高高层建筑中VE阻尼器效率的建议。 (c)2017美国土木工程师协会。

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