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首页> 外文期刊>International journal of structural stability and dynamics >SHAKING TABLE TESTS AND NUMERICAL ANALYSIS FOR VERTICAL SEISMIC RESPONSE OF QUAYSIDE CONTAINER CRANES
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SHAKING TABLE TESTS AND NUMERICAL ANALYSIS FOR VERTICAL SEISMIC RESPONSE OF QUAYSIDE CONTAINER CRANES

机译:岸边集装箱垂直振动分析的振动台试验和数值分析

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摘要

Vertical seismic performance is an important issue for the seismic design of large-scale engineering structures. The structure, which is relatively flexible and unrestricted vertically, may resonate and its response is obviously magnified under vertical earthquake excitations. The main objective of this study is to investigate the earthquake-resistance performance of a quayside container crane under vertical seismic excitations. To this end, a geometric-scaled model of 1:50 was firstly constructed according to the similitude law. Then using this model, a hammering modal test and a series of shaking table tests were successively conducted to obtain the dynamic characteristics and vertical seismic responses. Furthermore, the experimental results were compared with the computed results of prototype obtained from numerical analysis and agreed fairly well. From dynamic response results, it is found that the large-scale structure has relatively high vertical earthquake-resistance capacity and could satisfy the seismic design requirement. The findings reported in this paper are expected to provide some valuable information for studying other similar structures in the future.
机译:竖向抗震性能是大型工程结构抗震设计的重要问题。在垂直地震激励下,该结构相对柔性且垂直方向不受限制,可能会产生共振,并且其响应明显放大。本研究的主要目的是研究在垂直地震激励下码头集装箱起重机的抗震性能。为此,首先根据相似定律构造了1:50的几何比例模型。然后,使用该模型,依次进行了锤击模态试验和一系列振动台试验,获得了动态特性和垂直地震响应。此外,将实验结果与通过数值分析获得的原型的计算结果进行了比较,结果吻合得很好。从动力响应结果看,该大型结构具有较高的竖向抗震能力,可以满足抗震设计的要求。本文报道的发现有望为将来研究其他类似结构提供有价值的信息。

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