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首页> 外文期刊>International journal of steel structures >Effect of Wave Load on the Member Force of Steel Structure of Floating Buildings
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Effect of Wave Load on the Member Force of Steel Structure of Floating Buildings

机译:波浪载荷对浮式建筑钢结构分力的影响

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摘要

For floating buildings may float on the water for a long time, they are constantly affected by various environmental loads such as wind and wave loads. In this study to find the wave effect on the floating building, five models are designed using steel moment resisting frame. It is assumed that the lower part of the floating building is a reinforced concrete pontoon, while the upper part is a three-story steel frame. To analyze floating buildings affected by wind and wave loads, hydro-dynamic and substructure analysis are performed. As input loads, this study set limits that the mean wind velocity is 35 m/s and the significant wave height is 0.5 m for the residential building. From the hydrodynamic analysis, the time-history acceleration of building is obtained and transformed into a base ground input for a substructure analysis of the superstructure of the building. Finally the mean of the maximum from 30 dynamic analysis of the floating buildings are used to be compared with the results of the same model on the ground. It was shown that the dynamic results with wind and wave loads are not always lesser than the static results which are calculated with static equivalent wind load for a building that is located on the ground.
机译:由于漂浮的建筑物可能会长时间漂浮在水上,因此它们会不断受到各种环境负荷(例如风和波浪负荷)的影响。为了找出波浪对浮动建筑物的影响,本研究使用钢制抗弯框架设计了五个模型。假定浮动建筑物的下部是钢筋混凝土浮船,而上部是三层钢框架。为了分析受风和波浪载荷影响的浮动建筑物,进行了水动力分析和子结构分析。作为输入负载,本研究设定了住宅建筑的平均风速为35 m / s,有效波高为0.5 m。从流体动力学分析中,可以获得建筑物的时间历程加速度,并将其转换为基础地面输入,用于建筑物上部结构的子结构分析。最后,将浮动建筑物的30次动态分析的最大值平均值与地面上相同模型的结果进行比较。结果表明,风和波浪载荷的动态结果并不总是比静力结果小,静力结果是用静态等效风载荷计算的。

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