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Experimental and numerical studies on the response of an ice-surrounded structure during earthquake

机译:地震期间冰包围结构响应的实验与数值研究

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An experimental study was conducted to investigate the response of an ice-surrounded structure during earthquake by using an underwater shaking table. In this experiment, the interaction of an ice-surrounded structure with the soft and dense foundation and the dynamic reciprocal motion of the structure caused by an ice floe motion were investigated. It was found that the ice-surrounded structure on a dense foundation had sliding and locking motion occurred during shaking whereas on a soft foundation the displacement of the ice-surrounded structure was larger than the other cases on the dense foundation. Besides this experiment, a numerical analysis was also carried out by using FLIP (Finite element analysis of liquefaction program). The objective of this analysis was to validate the program FLIP for calculation of response of ice-surrounded structures during earthquake motions. This report describes the results of both the experimental and numerical analysis of an ice-surrounded structure subjected to earthquake motions.
机译:进行了实验研究,以研究通过使用水下振动台在地震期间冰包围结构的响应。在该实验中,研究了冰包围结构与柔软和致密的基础的相互作用以及由冰浮靴运动引起的结构的动态往复运动。结果发现,致密基础上的覆盖结构在摇动期间发生滑动和锁定运动,而在柔软的基础上发生冰包围结构的位移大于致密基础上的其他情况。除了该实验之外,还通过使用翻转(液化程序的有限元分析)进行数值分析。该分析的目的是验证用于计算地震运动期间冰包围结构的响应的程序翻转。本报告描述了对受地震运动进行冰包围结构的实验性和数值分析的结果。

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