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Numerical modeling of nonlinear coupling between lines/beams with multiple floating bodies.

机译:具有多个浮体的线/梁之间非线性耦合的数值模型。

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摘要

Nonlinear coupling problems between the multiple bodies or between the mooring/riser and the offshore platform are incorporated in the CHARM3D-MultiBody, a fully coupled time domain analysis program for multiple bodies with moorings and risers. The nonlinear spring connection module and the three dimensional beam module are added to appropriately solve the structural connection problem. The nonlinear spring connection module includes the hydro-pneumatic tensioner module with the friction & stick/slip implementation, the tendon/mooring disconnection (breakage/unlatch) module with the tendon down-stroke check, and the contact spring with the initial gap with the friction force implemented.;The nonlinear coupling may happen in many places for the offshore floating structures, such as hydro-pneumatic tensioner, tendon of TLP down stroke at the bottom joint, stick-slip phenomena at the tie down of the derrick and most of the fender-to-steel or steel-to-steel contact problem with initial gap during the installation. The mooring/tendon broken and unlatch can be a nonlinear connection problem once the transient mode is taken into account.;Nonlinearity of the stiffness and friction characteristics of the tensioner combined with stick-slip behavior of riser keel joint is investigated. The relationship between tensions and strokes for hydro-pneumatic tensioner is based on the ideal gas equation where the isotropic gas constant can be varied to achieve an optimum stroke design based on tensioner stiffness.;A transient effect of tendon down-stroke and disconnection on global performance of ETLP for harsh environmental condition is also investigated by incorporating the nonlinear boundary condition of the FE tendon model in CHARM3D. The program is made to be capable of modeling the tendon disconnection both at the top and the bottom connection as well as the down stroke behavior for the pinned bottom joint.;The performance of the tie-down clamp of derrick is also investigated by using six degrees of freedom spring model and the three(3) dimensional FE beam model. The coupling of the TLP motion with the reaction force at the tie-down clamp is considered by using exact nonlinear dynamic equations of the motion with the reaction forces modeled with the spring or FE beam model. The method reduces too much conservatism when we design the tie-down system by the conventional method, in which all the environmental forces are combined without the phase lag effect between them.;The FE beam model is also applied to the connectors between the semisubmersible and the truss for the pre-service and in-place conditions to be verified with the model test results, which shows good agreements.
机译:CHARM3D-MultiBody包含了多个物体之间或系泊/提升管与离岸平台之间的非线性耦合问题,CHARM3D-MultiBody是一个完全耦合的时域分析程序,适用于具有系泊和立管的多个物体。增加了非线性弹簧连接模块和三维梁模块,以适当解决结构连接问题。非线性弹簧连接模块包括具有摩擦和粘着/滑动功能的液压气动张紧器模块,具有肌腱向下行程止挡的肌腱/系泊断开(断裂/解锁)模块以及带有初始间隙的接触弹簧。在海上浮动结构的许多地方都可能发生非线性耦合,例如液压气动张紧器,底部接头处的TLP向下冲程肌腱,井架的束缚处有粘滑现象以及大部分安装过程中挡泥板与钢之间或钢与钢之间的接触问题以及初始间隙。一旦考虑了瞬态模式,系泊/腱断裂和解扣可能是一个非线性连接问题。研究了张紧器刚度和摩擦特性的非线性以及立管龙骨接头的粘滑特性。液压气动张紧器的张紧力与行程之间的关系基于理想气体方程,在该方程中可以根据张紧器的刚度改变各向同性气体常数以实现最佳的行程设计。还通过将有限元腱模型的非线性边界条件纳入CHARM3D中,研究了ETLP在恶劣环境条件下的性能。该程序能够模拟顶部和底部连接处的腱断裂以及底部固定销的向下冲程行为。;还使用六个方法研究了井架的系紧夹具的性能自由度弹簧模型和三维三维梁模型。通过使用带有弹簧或有限元模型的反作用力的精确非线性动力学方程,可以考虑TLP运动与束缚夹具处的反作用力的耦合。当采用常规方法设计束缚系统时,该方法降低了太多的保守性,在束缚系统中,所有环境力都被组合在一起而没有它们之间的相位滞后效应。使用模型测试结果验证使用前和就地条件的桁架,显示出良好的一致性。

著录项

  • 作者

    Yang, Chan Kyu.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Civil.;Engineering Marine and Ocean.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 250 p.
  • 总页数 250
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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