首页> 外文期刊>Advances in Structural Engineering >Analysis of Coupled Lateral-Torsional-Pounding Responses of One-Storey Asymmetric Adjacent Structures Subjected to Bi-directional Ground Motions part Ⅱ: spatially varying ground motion input
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Analysis of Coupled Lateral-Torsional-Pounding Responses of One-Storey Asymmetric Adjacent Structures Subjected to Bi-directional Ground Motions part Ⅱ: spatially varying ground motion input

机译:双向地震动作用下的非对称单层相邻结构的侧向扭振耦合响应分析第二部分:空间变化的地震动输入

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This is the second paper presenting numerical results of a parametric study of seismic induced lateral-torsional-pounding responses of an asymmetric and a symmetric one-storey adjacent structure. The accompany paper (Part Ⅰ) (Gong and Hao 2004) assumed ground motion input at all structural supports as uniform. Torsional responses are generated because of inherent structural eccentricity and eccentric pounding. In reality, seismic ground motion at different structural supports inevitably varies owing to wave propagation. Spatially varying ground motion will induce torsional responses of structures, and generate out-of-phase responses between adjacent structures. Thus it might have a significant effect on coupled lateral-torsional-pounding responses. This paper studies the ground motion spatial variation effect. For comparison purpose, same adjacent structure models and impact element used in Part Ⅰ of this study are adopted here again. 20 sets of spatially varying ground motion time histories are stochastically simulated. All the time histories are compatible with the Newmark-Hall design response spectrum with 5% damping and normalized to 0.5g. The spatial variation of any two simulated time histories is compatible with an empirical coherency loss function. Coupled lateral-torsional-pounding responses of the two structures to the simulated ground motions are calculated. Discussions on the ground motion spatial variation effects are made.
机译:这是第二篇论文,介绍了非对称和对称的一层相邻结构的地震引起的侧向扭转-竖向地震响应的参数研究的数值结果。伴随的论文(第一部分)(Gong and Hao 2004)假定所有结构支撑处的地震动输入是一致的。由于固有的结构偏心率和偏心敲击而产生扭转响应。实际上,由于波传播,不同结构支撑处的地震地震动不可避免地发生变化。空间变化的地面运动将引起结构的扭转响应,并在相邻结构之间产生异相响应。因此,它可能对耦合的侧向扭转-冲击响应产生重大影响。本文研究了地震动的空间变化效应。为了进行比较,此处再次采用本研究第一部分中使用的相同的相邻结构模型和冲击元件。随机模拟了20组空间变化的地面运动时间历史。所有时间历史记录均与具有5%阻尼的Newmark-Hall设计响应谱兼容,并归一化为0.5g。任何两个模拟时间历史的空间变化都与经验相干损失函数兼容。计算了两个结构对模拟地面运动的耦合的横向扭转-磅反应。讨论了地震动的空间变化效应。

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