首页> 外文会议>International Conference on Ocean, Offshore and Arctic Engineering >ANALYTICAL FORMULATION OF DISTRIBUTED BUOYANCY SECTIONS TO CONTROL LATERAL BUCKLING OF SUBSEA PIPELINES
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ANALYTICAL FORMULATION OF DISTRIBUTED BUOYANCY SECTIONS TO CONTROL LATERAL BUCKLING OF SUBSEA PIPELINES

机译:分布式浮力部分控制海底管道侧向屈曲的分析制剂

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Subsea pipelines designed to operate under high pressure and high temperature (HP/HT) conditions tend to relieve their axial stress by forming buckles. Uncontrolled buckles can cause pipeline failure due to collapse, low cycle fatigue or fracture at girth welds. In order to control the lateral buckling phenomenon, a methodology was recently developed which consists of ensuring regular buckle formation along the pipeline. Distributed buoyancy is one of the most reliable initiation techniques utilized for this purpose which have been recently applied in some projects. The behavior of pipeline sections with distributed buoyancy is normally evaluated by Finite Element Analyses (FEA) even during preliminary design when analytical models could be adopted. FEA are also utilized in order to support reliability calculations applied within buckle formation problems. However, the referred analyses are usually time-consuming and require some experience to provide good results. This paper presents an analytical formulation for a pipeline section with distributed buoyancy, which can be utilized during preliminary design in order to evaluate the influence of buoyancy sections over buckle shape, feed-in length, tolerable Virtual Anchor Spacing (VAS), etc. Regarding buckle formation, this paper also presents a methodology to determine an expression for the critical buckling force to be used as part of the limit state function in reliability analyses, which combines the results obtained from the referred analytical formulation with Hobbs infinite mode.
机译:旨在在高压和高温(HP / HT)条件下操作的海底管道倾向于通过形成搭扣来减轻轴向应力。由于坍塌,低循环疲劳或周长焊缝,不受控制的扣扣可能导致管道失败。为了控制横向屈曲现象,最近开发了一种方法,该方法包括确保沿管道的常规扣形成。分布式浮力是为此目的使用的最可靠的启动技术之一,该技术最近应用于一些项目。即使在采用分析模型时,通常通过有限元分析(FEA)进行分布式浮力的管道部分的行为。还利用FEA以支持在扣形成问题中应用的可靠性计算。然而,所指的分析通常是耗时的,需要一些经验来提供良好的结果。本文介绍了具有分布式浮力的管道部分的分析制剂,其可以在初步设计期间使用,以便评估浮力部分在扣状,进料长,可容忍的虚拟锚定间隔(VAS)等的影响。 QUAPLE形成,本文还提出了一种方法来确定作为可靠性分析中的限制状态功能的一部分用作临界屈曲力的表达,其结合了从引用的分析配方获得的结果与霍布斯无限模式。

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