单点系泊

  • 网络single point mooring;spm;SBM
单点系泊单点系泊
  1. 固定塔式单点系泊系统中塔架结构的疲劳分析

    Fatigue Analysis of Fixed Tower Structure for a SPM System

  2. 单点系泊油轮随机纵荡的工程计算方法

    An engineering method for predicting the random surge motion of a SPM tanker

  3. 其中单点系泊系统(SinglePointMooringSystem,简称SPM)用的最多、最普遍。

    But Single Point Mooring System ( SPM ) is used mostly and normally .

  4. FPSO软刚臂单点系泊系统动力分析

    Dynamic Analysis on the Tower - yoke Mooring System of FPSO

  5. 我国的渤海海域的FPSO几乎都采用软刚臂单点系泊系统作为系泊设施。

    Most FPSO of Bohai Sea adapts the soft yoke single point mooring system as mooring facilities .

  6. 在多种FPSO系泊定位方式中,水上软刚臂单点系泊定位系统在我国渤海海域中广泛应用。

    In a variety of FPSO mooring positioning , overwater Soft Yoke Single Mooring System is widely used in the Bohai Sea of China .

  7. 单点系泊系统的Liapunov-Schmidt约化与奇异性分析

    Liapunov-Schmidt reduction and singularity analyse of single point mooring systems

  8. 根据研究结果和实际海况资料,应用HARP程序对卡拉奇港单点系泊系统工程实际进行了耦合分析。

    The time-domain coupled analysis of the single point mooring system which is parked at Karachi port has been done using HARP program based on research results and reality oceanic conditions .

  9. 正常状态下,FPSO通过单点系泊装置长期系泊于工作海域,它随着环境载荷的作用绕单点自由转动,此时FPSO受风浪流等载荷的影响较小。

    In normal state , FPSO is moored in its operation sea area for a long time by single-point mooring , which is turning with single-point due to environmental loading such as wind , current and waves .

  10. 铰接塔平台为适应水深100m~500m的顺应式平台,可用于单点系泊、装载终端、控制塔、海底安装等生产环节。

    The articulated tower platform ( ATP ) is the a kind of compliant platform designed for water depths of 100 to 500 m , it is used as single point mooring or as loading terminals , control towers , seabed installation facilities .

  11. FPSO平台通过系泊系统系泊于某一固定海域,软刚臂单点系泊系统抗风浪能力强,初期投资小,是最适应浅海海域的系泊系统。

    FPSO platform is mooring in a fixed area through the mooring system . The soft yoke single point mooring system has the strong ability to resist wind and waves , need less initial investment , is the most appropriate mooring system in shallow water .

  12. 采用美国数据浮标中心(NDBC)提出的分析方法,即将锚泊线动力方程线性化,并考虑到锚泊线与浮标体之间相互耦合的关系,在频率域中对单点系泊浮标进行了动力分析。

    The method proposed by NDBC is used to solve the dynamic problem of moored buoy . In this method , the dynamic equations of mooring line were linearized while the interaction between buoy motions and cable motions is taken into consideration .

  13. BZ34-2/4单点系泊钢轭轴承基座机加工

    The Machining of Bearing Foundation for Single - Point Mooring Yoke

  14. 茂名单点系泊系统接卸超巨型油轮的安全论证

    Safety Assessment of VLCC Unloading in Maoming Single Point Mooring System

  15. 单点系泊油轮动力响应试验研究

    Experiment Study on dynamic response of single point moored tanker

  16. 单点系泊浮式生产储油船的海上安装

    Offshore hookup of storage tanker with single - point floating production system

  17. 单点系泊海洋导管架平台结构体系可靠性分析

    System reliability analysis for single point mooring jacket platform structures

  18. 海上单点系泊锚链调整软件的开发

    The Software Development of Anchor Chains Adjustment in Offshore Mooring

  19. 单点系泊物体长周期运动的统计研究

    Statistical study on long periodical motions of a single point mooring structure

  20. FPSO&STP中深水单点系泊系统

    STP Mooring System of FPSO in Middle & Deep water

  21. 为了检验理论分析的结果,以上述装置为原型,进行了单点系泊船形浮动采油装置的模型试验,试验结果和理论分析结果吻合较好。

    A scaled model test gave identical results with the theoretical analysis .

  22. 单点系泊网衣构件波浪试验研究

    Wave experiment on netting structure with single point moorings

  23. 单点系泊船舶运动的仿真研究

    Simulation Study on Motion of Single Point Mooring Vessel

  24. 单点系泊海洋资料浮标的动力分析

    Dynamic analysis of a single moored sea data buoy

  25. 超级油轮单点系泊作业辅助拖轮的配置

    Configuration of Auxiliary Tug for Operation of Super Tanker in SBM Assisted examination

  26. 单点系泊系统立管应力长期预报

    Long-term prediction of riser sterss in single point mooring

  27. 一种简易单点系泊系统的可行性研究

    Feasibility Study on Simply Equipped Single Point Mooring System

  28. 单点系泊的系泊稳定性分析

    The Moored Stability of Single Point Mooring System

  29. 秦皇岛32-6油田单点系泊系统的特点

    Feature of QHD 32-6 Single Point Mooring System

  30. 单点系泊系统立管水弹性疲劳分析

    The hydroelastic fatigue analysis of a sals riser