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Stability control of a novel frame integrated with an SMA-MRF control system for marine structural applications based on the frequency analysis

机译:基于频率分析的船舶结构应用中的SMA-MRF控制系统集成的新型框架的稳定性控制

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摘要

Structural integrity and ensuring the stability of steel frame structures, including marine and coastal structures, are the main challenges for designers in civil infrastructures, particularly in oil platforms, subjected to tough periodic and non-periodic environmental loading conditions. Variable loadings with different amplitudes and frequencies may lead to the stability of steel structures loss. In order to keep the stability of the steel structures and prevent possible damages, reliable yet efficient structural control systems are in demand. Conventional structural control systems need significant activation energy and/or in-depth users knowledge to be effective. Most recently, smart materials and systems, notably shape memory alloy (SMA) and magnetorheological fluid (MRF), are considered to replace with the conventional systems. In this study, the SMA-MRF based structural control systems are installed in a simplified marine structure to investigate the frequency responses of the structure subjected to three scaled ground motions. Three structural parameters including the root-mean-square (RMS), the peak displacement, and particularly the frequency analysis are studied. The results show remarkable enhancement in structural behavior equipped with the SMA-MRF based system.
机译:结构完整性和确保包括海洋和沿海地组的钢框架结构的稳定性,是民用基础设施中设计师的主要挑战,特别是在石油平台上受到严峻的周期性和非定期环境负载条件。具有不同幅度和频率的可变负载可能导致钢结构损失的稳定性。为了保持钢结构的稳定性并防止可能的损坏,可靠但高效的结构控制系统需求。传统的结构控制系统需要显着的激活能量和/或深入用户知识来有效。最近,智能材料和系统,特别是形状记忆合金(SMA)和磁流变流体(MRF)被认为是用常规系统替代。在这项研究中,基于SMA-MRF的结构控制系统安装在简化的海洋结构中,以研究经受三个缩放的地面运动的结构的频率响应。研究了三种结构参数,包括根均方(RMS),峰值位移,特别是频率分析。结果表明,具有基于SMA-MRF系统的结构行为显着提高。

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