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Heave motion mitigation of semi-submersible platform using inerter-based vibration isolation system (IVIS)

机译:基于过程的隔振系统(IVIS)升降半潜式平台的运动缓解

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This paper develops an inerter-based vibration isolation system (IVIS) for heave motion mitigation of semi-submersible platforms (SSPs) subjected to sea waves. An analytical model of a classical SSP equipped with IVIS is first established and validated by comparing the heave response amplitude operator (RAO) with the previous experimental and numerical results, and the corresponding equations of motion are derived. Optimization analyses are performed to search for the optimum inertance-to-mass ratio of IVIS by minimizing the heave motion standard deviation of the SSP. A case study is carried out to demonstrate the control performance of IVIS in the frequency and time domains. The results indicate that the proposed IVIS is more effective and has a wider effective frequency range compared to the conventional vibration isolation system (VIS). By introducing a parallel-connected inerter, the reduction ratio of the receiving body can be further improved by more than 23%. More importantly, the IVIS can achieve the best control performance under different wave conditions by adjusting the inertance in the system. The proposed IVIS is an attractive alternative to the conventional vibration isolation systems for offshore platforms.
机译:本文开发了一种基于活动的振动隔离系统(IVIS),用于对海浪进行半潜式平台(SSP)的升降运动缓解。首先通过将升降响应幅度运算符(RAO)与先前的实验和数值结果进行比较,首先建立和验证配备有IVIS的经典SSP的分析模型,并导出相应的运动方程。通过最小化SSP的升降运动标准偏差来执行优化分析以搜索IVIS的最佳惯性与质量比。进行案例研究以证明IVIS在频率和时间域中的控制性能。结果表明,与传统的振动隔离系统(VI)相比,所提出的IVIS更有效并且具有更宽的有效频率范围。通过引入平行连接的活动,接收体的减小比率可以进一步提高超过23%。更重要的是,IVIS通过调整系统中的惯性来实现不同波条件下的最佳控制性能。所提出的IVIS是对海上平台的传统隔振系统的有吸引力的替代品。

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