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Elastic inter-story drift seismic demand estimate of super high-rise buildings using coupled flexural-shear model with mass and stiffness non-uniformities

机译:耦合弯曲剪切模型具有质量和刚度非均匀性的耦合弯曲剪切模型的弹性际漂移抗震估计

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摘要

With a major concern regarding the preliminary seismic design of super high-rise buildings, a modified flexural shear model (FSM-MS) is developed and well-targeted to account for the dual non-uniform distributions of story mass and stiffness, and to provide an efficient estimate of their maximum inter-story drift (ISD) demands. The analytical solution to the differential equation of the free vibration of a system is achieved by the rationally assumed correlations of the distribution functions among flexural stiffness, shear stiffness and story mass. With the statistical relations for the first two periods from 124 super high-rise frame core-tube buildings, a code compliant estimate of the elastic maximum ISD and a corresponding strategy for the ISD-targeted stiffness demand estimate are developed. The holistic design feasibility, efficiency and accuracy of FSM-MS is fully demonstrated by three case super high-rise buildings with different heights and non-uniformities. FSM-MS combined with the code-specified design response spectrum and the modal decomposition method is more specialised in offering an efficient and reasonably conservative estimate of the maximum ISD demand of super high-rise buildings.
机译:对于超高层建筑的初步地震设计的主要问题,开发了一种改进的弯曲剪切模型(FSM-MS),以考虑到故事质量和刚度的双重非均匀分布,并提供高效估计其最大界面漂移(ISD)需求。通过抗弯刚度,剪切刚度和故事质量的分布函数的合理假设相关性来实现系统的自由振动的微分方程的分析解决方案。利用124个超高层框架芯管建筑的前两个时段的统计关系,开发了弹性最大ISD的兼容估计和ISD靶向刚度需求估计的相应策略。 FSM-MS的整体设计可行性,效率和准确性由具有不同高度和非均匀性的三种超高层建筑物完全证明。 FSM-MS与代码指定的设计响应频谱相结合,模态分解方法更为专业,提供高效和合理保守的估计超高高层建筑的最大ISD需求。

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