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Stability evaluation of the acceleration and energy response spectra

机译:加速度和能量响应光谱的稳定性评估

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Seismic design codes commonly use the acceleration response spectrum to determine the seismic force. It is based on the maximum elastic response at a specific time according to the equation of motion for a single-degree of -freedom system. The seismic effect is evaluated as the load effect by the response spectrum. However, there is no close correlation between the seismic input energy and acceleration response spectrum. Structural damage is not necessarily proportional to the maximum response of acceleration/displacement and is also significantly affected by the accumulative inelastic deformation during an earthquake. In addition, real structures have multiple stories with various distributions of the strength, stiffness and mass alongside P-Delta and torsional effects, so the current acceleration spectrum is very different from real behavior. In this study, the stability of the acceleration response spectrum according to structural characteristics mentioned above was verified by numerical analysis and compared to the stability of the energy response spectrum. The adequacy of the current design spectrum was evaluated to develop suggestions for improving the accuracy of seismic design for the ground motions with the predominant period of less than 1.00 s.
机译:地震设计代码通常使用加速响应谱来确定地震力。基于根据运动的特定时间的最大弹性响应,根据用于单一程度的血迹系统。通过响应谱评估地震效果作为负荷效应。然而,地震输入能量和加速度响应谱之间没有紧密相关性。结构损伤不一定与加速/位移的最大响应成比例,并且也受到地震期间累积的无弹性变形的显着影响。另外,实际结构具有多个故事,具有各种分布的强度,刚度和质量,伴随对Δ和扭转效应,因此当前的加速度谱与真实行为不同。在该研究中,通过数值分析验证了根据上述结构特征的加速度响应谱的稳定性,与能量响应谱的稳定性相比验证。评估了当前设计谱的充分性,以制定提高地震设计精度的建议,其主要时间小于1.00秒。

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