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Investigation on Damage-Involved Structural Response of Colliding Steel Structures During Ground Motions

机译:地面运动过程中碰撞钢结构损伤结构响应的研究

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Earthquakes are the most unpredictable damaging loads which can affect civil engineering structures. Due to insufficient separation distance between adjacent structures with different dynamic properties, structural collisions may occur during ground motions. Although the research on structural pounding has recently been much advanced, the studies have mainly been conducted for concrete structures. The aim of this paper is to show the results of experimental investigation, focused on dynamic behaviour of closely-separated three models of steel structures which have been subjected to damaging earthquake excitations. The study was performed using three models of steel towers with different dynamic parameters and various distances between the structures. The acceleration time histories of the Kobe and the Northridge earthquakes were applied as the seismic excitation. The unidirectional shaking table, located at the Gdansk University of Technology (Poland), was used in the experimental study. The results have confirmed that collisions may lead to the increase in the structural response, although they may also play a positive role, depending on the size of the separation gap between the structures.
机译:地震是可能影响土木工程结构的最不可预测的损坏负荷。由于具有不同动态特性的相邻结构之间的分离距离不足,在地面运动期间可能发生结构碰撞。虽然对结构击打的研究最近已经提出了很大,但研究主要是为混凝土结构进行的。本文的目的是展示实验研究的结果,专注于紧密分离的三种钢结构的动态行为,这些钢结构已经受到损害地震激励。该研究是使用三种钢塔进行的,具有不同的动态参数和结构之间的各种距离。科比和北极地震的加速时间历史作为地震激励应用。在实验研究中使用了位于格但斯克理工大学(波兰)的单向摇桌。结果证实,碰撞可能导致结构响应的增加,尽管它们也可能起到积极的作用,这取决于结构之间的分离间隙的尺寸。

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