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SEISMIC RESPONSE OF LONG-SPAN DOMES SUPPORTED BY MULTI-STOREY SUBSTRUCTURES

机译:多层子结构支持的长跨度圆顶的地震响应

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This paper investigates the seismic response characteristics of long-span domes. The natural periods of the prominent modes are longer than medium-span domes, which leads to a greater contribution from the higher modes to the response of the long-span dome. The acceleration distributions, particularly the vertical acceleration distributions are sensitive to the dominant mode shapes of these higher modes. This leads to inaccuracies when applying the previously proposed response evaluation methods. The vibration modes of multi-storey supporting substructures also affect the excited vibration modes of the roof. In this paper, the dynamic characteristics and seismic response of 150m-span domes supported by multi-storey substructures are studied. The effects of the post-yield stiffness of multi-storey substructures are also analysed by considering two structural systems, buckling-restrained braced frames (BRBF) and damped spine frames. A simple design procedure to evaluate the equivalent static loads using amplification factors and incorporating the effects of higher modes is proposed based on response spectrum analysis and equivalent linearisation procedures. The accuracy of the proposed method is evaluated by comparing the responses with those obtained from non-linear response history analysis.
机译:本文研究了长跨度圆顶的地震反应特征。突出模式的自然周期比中跨圆形更长,这导致从更高模式到长跨度圆顶的响应的更大贡献。加速度分布,特别是垂直加速度分布对这些更高模式的主导模式形状敏感。在应用先前提出的响应评估方法时,这导致不准确。多层支撑子结构的振动模式也影响了屋顶的激发振动模式。在本文中,研究了多层子结构支持的150m跨度圆形结构的动态特性和地震响应。通过考虑两个结构系统,屈曲束缚的支撑框架(BRBF)和阻尼的脊柱框架,还分析了多层余下子结构的屈服刚度的影响。基于响应频谱分析和等同的线性过程,提出了一种简单的设计过程来评估使用放大因子并结合更高模式的效果来评估等效静态载荷。通过将响应与从非线性响应历史分析获得的那些的响应进行比较来评估所提出的方法的准确性。

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