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Structural response analysis of the hydraulic pneumatic tensioner under its local failure based on a fully coupled TLP-TTR system

机译:基于全耦合TLP-TTR系统的局部故障下液压气动张紧器的结构响应分析

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摘要

The presented work studied the structural response of the hydraulic pneumatic tensioner (HPT) in a TLP-TTR system with failure of the tensioner cylinder. A fully coupled hull-tendon-TTR-tensioner model was established in AQWA to simulate the failure numerically. A specific HPT was modeled by considering 4 cylinders and the real-time stroke of each piston. A set of formulas was proposed to calculate the real-time tension including different components, e.g. Stribeck friction, in the tensioner. A riser array including 6 independent production TTRs and their tensioners was also modeled. The production TTR model was stacked up by different specific riser joints. The hydrodynamic force acting on the hull was obtained by using the 3D potential flow theory. The real-time tensions on different tensioner cylinders were obtained by using an in-house-developed program. Different environmental conditions, including a calm sea, regular waves, and extreme sea states, were considered in the simulations. In the results, the behaviors of different cylinders of the failed tensioner were presented. The results show that when an accidental local failure of the HPT occurs, the tension and stroke responses are still far from the designed-limits to induce a progressive failure.
机译:所提出的工作研究了TLP-TTR系统中液压气动张紧器(HPT)的结构响应,张紧器气缸的故障。在AQWA中建立了一个完全耦合的船体 - TTR张紧器模型,以在数值上模拟故障。通过考虑4个气缸和每个活塞的实时行程来建模特定的HPT。提出了一组公式来计算包括不同组件的实时张力,例如,在张紧器中摩擦摩擦。还建模了一个提升机阵列,包括6个独立生产TTR及其张紧器。生产TTR模型由不同的特定立管接头堆叠。通过使用3D电位流动理论获得作用在船体上的流体动力学力。通过使用内部开发的程序获得不同张紧器圆柱体上的实时紧张。在模拟中考虑了不同的环境条件,包括平静的海洋,常规波和极端海区。在结果中,提出了失败张紧器的不同汽缸的行为。结果表明,当HPT的意外局部失败发生时,张力和行程响应仍然远离设计限制,以诱导逐渐失败。

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  • 来源
    《Oceanographic Literature Review》 |2020年第10期|2307-2307|共1页
  • 作者

    S. Hao; Y. Yu; J. Yu;

  • 作者单位

    State Key Laboratory of Hydraulic Engineering Simulation and Safety Tianjin University Tianjin 300072 China;

    State Key Laboratory of Hydraulic Engineering Simulation and Safety Tianjin University Tianjin 300072 China;

    State Key Laboratory of Hydraulic Engineering Simulation and Safety Tianjin University Tianjin 300072 China;

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  • 正文语种 eng
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