首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering, Jun 23-28, 2002, Oslo, Norway >DESIGN STUDY OF A DEEPWATER COMPLIANT VERTICAL ACCESS RISER FOR THE GULF OF MEXICO
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DESIGN STUDY OF A DEEPWATER COMPLIANT VERTICAL ACCESS RISER FOR THE GULF OF MEXICO

机译:墨西哥湾深水顺应立管的设计研究

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This paper presents the results of a design study of a compliant vertical-access riser (CVAR) for the deepwater Gulf of Mexico area. The CVAR concept modifies traditional, tensioned risers by providing vertical compliancy through its geometric shape that is achieved by elongating the riser and providing buoyancy along the lower section. A major benefit of this geometric compliancy is that surface trees can be fixed relative to the floating vessel. Also, there is a potential for significant cost savings as compared to alternate, top-tensioned riser systems. A key design feature is the tapering of the buoyancy transition to create a nearly neutrally buoyant region. This tapering reduces bending stress between the weighted and buoyant regions of the CVAR. The design basis for this study is a production riser system for a deep draft caisson vessel (DDCV) in 4900 feet of water. The design study begins by establishing a base configuration for operational conditions. This configuration is then checked for extreme loading and fatigue due to DDCV motions and riser VIV. The potential for riser interference is also checked. The study also includes a brief assessment of fabrication and installation procedures. Finally, a cost estimate is made for comparison with alternate production riser systems.
机译:本文介绍了针对墨西哥湾深水区的顺应式垂直通道立管(CVAR)的设计研究结果。 CVAR概念通过其几何形状提供垂直顺应性来修改传统的张紧式立管,该几何形状通过拉长立管并沿下部提供浮力来实现。这种几何形状顺应性的主要好处是,水面树木可以相对于浮船固定。而且,与备用的,顶部张紧的立管系统相比,有可能节省大量成本。一个关键的设计特征是浮力过渡部分逐渐变细,以形成几乎中性的浮力区域。这种渐缩减小了CVAR的加权区域和浮力区域之间的弯曲应力。这项研究的设计基础是在4900英尺水深的沉箱沉船(DDCV)的生产立管系统。设计研究首先要为操作条件建立基本配置。然后检查此配置是否由于DDCV运动和立管VIV而导致极端负载和疲劳。还检查立管干扰的可能性。该研究还包括对制造和安装程序的简短评估。最后,进行成本估算以与备用生产提升管系统进行比较。

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