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Investigation of Seismic Behavior of Container Crane Structures by Shake Table Tests and Mathematical Modeling

机译:通过振动台试验和数学建模研究集装箱起重机结构的抗震性能

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摘要

This paper is concerned with the verification of mathematical modeling of the container cranes under earthquake loadings with shake table test results. Comparison of the shake table tests with the theoretical studies has an important role in the estimation of the seismic behavior of the engineering structures. For this purpose, a new shake table and mathematical model were developed. Firstly, a new physical model is directly fixed on the shake table and the seismic response of the container crane model against the past earthquake ground motion was measured. Secondly, a four degrees-of-freedom mathematical model is developed to understand the dynamic behaviour of cranes under the seismic loadings. The results of the verification study indicate that the developed mathematical model reasonably represents the dynamic behaviour of the crane structure both in time and frequency domains. The mathematical model can be used in active-passive vibration control studies to decrease structural vibrations on container cranes.
机译:本文涉及用振动台试验结果验证地震荷载下集装箱起重机的数学模型。振动台试验与理论研究的比较在估算工程结构的抗震性能方面具有重要作用。为此,开发了新的振动台和数学模型。首先,将新的物理模型直接固定在振动台上,并测量集装箱起重机模型对过去地震地震动的地震响应。其次,建立了四自由度数学模型,以了解起重机在地震作用下的动态行为。验证研究的结果表明,所开发的数学模型在时域和频域均能合理地代表起重机结构的动态行为。该数学模型可用于主动-被动振动控制研究中,以减少集装箱起重机上的结构振动。

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