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Simulation of seismic collapse of simple structures with energy-based procedures

机译:基于能量的程序模拟简单结构的地震塌陷

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摘要

Characterization of structural collapse is one of the key components of performance based earthquake engineering (PBEE) design. Usually, in seismic codes, the point of dynamic structural collapse due to earthquakes is based on parameters approaching subjective threshold values. Instead, energy-based formulations have raised as a more physical and robust approach in understanding the balance between the seismic energy input into the systems and the structural energy dissipated. In this paper a comparison between different energy-based methodologies is shown. Particularly, the formulation of a kinetic energy-based methodology is proposed and compared with the gravitational and intrinsic energy-based procedures, and with the results of the pushover analysis. The results show that the collapse state evaluated with the kinetic energy-based criterion is compatible with gravitational energy-based collapse technique in which its results were verified through some experimental tests. While in gravitational energy based method the amount of gravitational force should necessarily be significant, the proposed kinetic energy procedure predicts collapse point regardless of gravitational force. It also predicts local damage and hinge formation reasonably. The methods were investigated using single-degree systems (SDOFs) and a three story steel frame. According to outcomes, the proposed procedure can be used as an acceptable method for determination of collapse time, drift, and local damage.
机译:结构崩溃的特征是基于性能的地震工程(PBEE)设计的关键部件之一。通常,在地震码中,由于地震引起的动态结构崩溃的点基于接近主观阈值的参数。相反,基于能量的制剂在理解地震能量投入到系统中的平衡和结构能量消散的情况下,已经提高了更有物理和鲁棒的方法。本文示出了不同能量的方法之间的比较。特别地,提出了基于动力学的方法的制剂,并与引力和基于基于能量的程序进行比较,以及推送分析结果。结果表明,随着基于动力学的标准评价的崩溃状态与引力能量的崩塌技术兼容,其中通过一些实验测试验证了其结果。在引力能量的方法中,引力的量必须一定是显着的,所以提出的动能程序预测坍塌点,无论重力力如何。它还可以合理地预测局部损坏和铰链形成。使用单度系统(SDOFS)和三层钢架研究了该方法。根据结果​​,所提出的程序可用作测定塌陷时间,漂移和局部损伤的可接受方法。

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