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Use of Performance-Based Methods to Evaluate Structural Response to Hurricane Loading

机译:使用基于性能的方法来评估对飓风负载的结构应答

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When executing major modernization of existing buildings besides the challenges of adapting new mechanical equipment and architectural elements, the greatest challenge can come from updating the structural frame to resist current code prescribed lateral forces. As research and testing results in the evolution of building codes, new design forces often exceed the limits of the lateral force resisting systems for older buildings. As great a challenge there is of upgrading the structural system, often the most expensive impacts are related to the time required, and impact to the existing occupants to remove and reconstruct architectural elements. This paper highlights a project where preliminary studies based on traditional methods of analysis indicated the need to perform major structural upgrading as part of the building modernization effort. Due to the requirement of maintaining full occupancy and the estimated costs for the effort, an alternative performance based analysis was performed. These included both simplified methods to prove the concept, and ultimately more advanced methods to verify the expected outcome. The analysis utilized non-linear push-over and time history analyses typical of those for high level earthquake loads for a structure exposed to hurricane forces. Loads were developed using wind tunnel analysis to simulate a one-hour event with a 0.2 sec time step. The result was that no structural upgrading was needed, thus saving the project approximately $20 million. This topic is of international interest. It advances the science of wind engineering beyond standard building code requirements. It demonstrates the resilience inherent in structures that is generally unaccounted for in day-to-day design.
机译:在执行现有建筑物的主要现代化外,除了调整新的机械设备和建筑元素的挑战之外,最大的挑战可以通过更新结构框架来抵抗规定的横向力。随着研究和测试导致建筑码的演变,新的设计力量通常超过旧建筑物侧向力抵抗系统的限制。由于挑战升级结构系统,通常最昂贵的影响与所需的时间有关,以及对现有乘员的影响,以去除和重建架构元素。本文突出了一个项目,其中基于传统分析方法的初步研究表明,作为建筑现代化工作的一部分,需要进行主要结构升级。由于要求维持全部占用和努力的估计成本,执行了替代性能的分析。这些包括简化方法来证明概念,并最终更先进的方法来验证预期的结果。分析利用了非线性推移和时间历史分析,典型的典型地震载荷为暴露于飓风力的结构。使用风隧道分析开发了负载,以模拟0.2秒的时间步长。结果是,不需要结构升级,从而节省项目约2000万美元。这个话题是国际兴趣。它提出了超越标准建筑规范要求的风力技术科学。它展示了在日常设计中通常未占用的结构中固有的弹性。

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