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Dynamic behaviour of unbraced steel frames resting on soft ground

机译:软土地基上无支撑钢框架的动力特性

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Many recent earthquakes clearly illustrate the importance of local ground properties for the dynamic response of structures. The dynamic response of an engineering structure is influenced by the medium on which it is founded. On solid rock, a fixed-base structural response occurs which can be evaluated by subjecting the foundation to the free-field ground motion occurring in the absence of the structure. However, on deforma-ble ground, a feedback loop exists. In other words, when a feedback loop exists, the structure responds to the dynamics of the soil, while the soil also responds to the dynamics of the structure. Structural response is then governed by the interplay between the characteristics of the ground, the structure and the input motion. This study involved a numerical investigation of the dynamic behaviour of unbraced steel frames resting on soft ground. Two types of mid-rise unbraced steel frame, including 5- and 15-storey buildings on a soft soil deposit, were selected and analysed under the influence of three different earthquake acceleration records. The above-mentioned frames were analysed under two different boundary conditions: i) fixed-base (no soil-structure interaction) and ii) flexible-base (considering soil-structure interaction). The results of the analyses in terms of structural forces and lateral displacements for the above-mentioned boundary conditions are compared and discussed.
机译:最近发生的许多地震清楚地说明了局部地面特性对于结构动力响应的重要性。工程结构的动态响应受其所基于的介质的影响。在固体岩石上,发生了固定基础的结构响应,可以通过使基础经受不存在结构的自由场地震动来评估。但是,在可变形的地面上,存在反馈回路。换句话说,当存在反馈回路时,结构会响应土壤的动力,而土壤也会响应结构的动力。然后,结构响应由地面特征,结构和输入运动之间的相互作用决定。这项研究涉及对放在软土地上的无支撑钢框架的动力行为的数值研究。在三种不同的地震加速度记录的影响下,选择并分析了两种类型的中层无支撑钢框架,包括在软土上的5层和15层建筑物。在两个不同的边界条件下分析了上述框架:i)固定基础(无土壤与结构的相互作用)和ii)柔性基础(考虑了土壤与结构的相互作用)。比较并讨论了上述边界条件下的结构力和侧向位移的分析结果。

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