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首页> 外文期刊>International Journal of Applied Engineering Research >Rigid-plastic Seismic Analysis to Predict the Structural Ductility Demand
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Rigid-plastic Seismic Analysis to Predict the Structural Ductility Demand

机译:刚塑性地震分析预测结构延性需求

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An earthquake resistant structure will suffer large plastic deformations under strong ground motions. This paper presents a practical method to evaluate the maximum plastic displacement of a structure, when the latter is modelled as an elastoplastic oscillator. The method exploits the results from a rigid-plastic model possessing the same ratio between yield strength and mass as the actual elastoplastic oscillator. The rigid-plastic model is shown to give a good estimate of the maximum plastic displacement of an elastoplastic oscillator when the natural period of the actual elastoplastic oscillator is comparatively short or comparatively high. For medium-period oscillators, however, the rigid-plastic approximation needs to be corrected. The present paper provides an empirical formula to calculate the required corrections, whatever the oscillator and the earthquake. This formula leads to a good -and almost always conservative- estimate of the seismic ductility demand and makes the rigid-plastic approach readily applicable to seismic design.
机译:在强烈的地面运动下,抗震结构将遭受较大的塑性变形。当将结构建模为弹塑性振子时,本文提出了一种评估结构最大塑性位移的实用方法。该方法利用了刚塑性模型的结果,该模型具有与实际弹塑性振子相同的屈服强度与质量之比。当实际的弹塑性振子的自然周期相对较短或相对较高时,刚塑性模型可以很好地估计弹塑性振子的最大塑性位移。但是,对于中周期振荡器,需要校正刚塑性近似。本文提供了一个经验公式,可以计算所需的校正量,无论是振荡器还是地震。该公式可以很好地(几乎总是保守地)估计地震延性需求,并且使刚塑性方法易于应用于地震设计。

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