Modal analysis of Shanghai world financial center based on using ANSYS

Bowen You, Zhijie Shen, Yizhao Wang, Enze Li, Zhe Yu
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引用次数: 0

Abstract

This study delves into the resonance phenomena within the complex structure of the Shanghai Global Financial Center. By utilizing ANSYS simulations, we can accurately predict the vibration patterns and magnitudes exhibited by the building under various conditions. These resonance phenomena have the potential to significantly impact the buildings stability, occupant comfort, and overall structural integrity. This research conducts a thorough analysis of the self-resonance conditions of the Shanghai Global Financial Center through the application of ANSYS software. The study successfully identifies resonance frequencies and provides a deeper understanding of resonance mechanisms. These findings offer valuable insights for comprehending and mitigating resonance-related issues. Moreover, they hold great significance for the design and engineering of super-tall skyscrapers, offering essential guidance to ensure their safety and performance. AMSS_0403rchitects and engineers can use this knowledge to optimize the design and construction of such impressive structures, ultimately contributing to the advancement of tall building technology. Enze Li and Zhe Yu are dedicated to data collection, Bowen You and Yizhao Wang specialize in modeling and data recording and analysis, while Zhijie Shen and Enze Li are responsible for carefully crafting and refining the paper.
基于 ANSYS 的上海环球金融中心模态分析
本研究深入探讨了上海环球金融中心复杂结构中的共振现象。通过 ANSYS 仿真,我们可以准确预测大楼在各种条件下的振动模式和振动幅度。这些共振现象有可能对建筑的稳定性、居住舒适度和整体结构完整性产生重大影响。本研究应用 ANSYS 软件对上海环球金融中心的自共振情况进行了全面分析。研究成功确定了共振频率,并对共振机理有了更深入的了解。这些发现为理解和缓解共振相关问题提供了宝贵的见解。此外,它们对超高摩天大楼的设计和工程具有重要意义,为确保其安全和性能提供了必要的指导。AMSS_0403建筑师和工程师可以利用这些知识优化此类令人印象深刻的结构的设计和建造,最终促进高层建筑技术的进步。李恩泽和于哲致力于数据收集,尤博文和王一钊专门负责建模和数据记录与分析,而沈志杰和李恩泽则负责精心撰写和完善论文。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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