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Optimization of structures with unrestricted dynamic shakedown constraints

机译:具有不受限制的动态减振约束的结构的优化

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摘要

The unrestricted dynamic shakedown theory is here utilized with the aim to formulate different optimal design problems for structures mainly subjected to seismic loads. In particular, reference is made to plane frame structures constituted by elastic perfectly plastic material subjected to load combinations characterized by the presence of simultaneous fixed and seismic actions. The design problems, formulated on the ground of a statical approach, are devoted to structures with and without seismic protection devices, with special emphasis to seismic isolators. For the proposed design problem formulations different constraints are utilized; actually, for structures without protection devices the design problem must impose that the optimal structure remains elastic for fixed loads, shakes down for serviceability seismic conditions and prevents the instantaneous collapse for high seismic loads; while for structures provided with a given base isolation system, it is imposed that they remain elastic for fixed loads and shakes down for full seismic conditions. Appropriate modal analyses are utilized in order to take into account for both classically and non-classically damped structures. The seismic load history to be considered for shakedown and collapse limit admissibility conditions is a repeated seismic load one according with the unrestricted shakedown theory. The effected applications are related to plane steel frames.
机译:此处采用无限制的动态减振理论,旨在针对主要承受地震载荷的结构制定不同的最佳设计问题。特别地,涉及由承受载荷组合的弹性完全塑性材料构成的平面框架结构,所述载荷组合的特征在于同时存在固定和地震作用。基于静态方法提出的设计问题专门针对带有和不带有地震保护装置的结构,尤其是地震隔离器。对于所提出的设计问题公式,使用了不同的约束。实际上,对于没有保护装置的结构,设计问题必须提出最佳结构,使其在固定载荷下保持弹性,在可使用的地震条件下震动,并在高地震载荷下防止瞬时坍塌;而对于具有给定基础隔震系统的结构,必须使其在固定载荷下保持弹性,并在整个地震条件下震动。为了考虑经典和非经典阻尼结构,使用了适当的模态分析。根据无限制的减震理论,考虑减震和塌陷极限容许条件的地震荷载历史是重复的地震荷载。受影响的应用与平面钢框架有关。

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