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COMPARISON OF APPLICABLE CODES AND STANDARDS FOR DESIGN OF END BULKHEADS OF PIPE-IN-PIPE SYSTEMS

机译:管道系统端头设计的适用标准和标准的比较

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Pipe-In-Pipe (PIP) systems are increasingly used where the primary objective is to prevent wax deposition and/or hydrate formation and to achieve a low Overall Heat Transfer Coefficient (OHTC) value. PIP systems are also increasingly considered as an additional protective layer against loss of containment (e.g. in Arctic pipelines) or to withstand the interaction of a third party (e.g. trawl gear impact) in lieu of costly pipeline burial. At the end of each PIP section, either at a midline connection or end point tie-in, bulkheads are used as a way of transition from a double wall (PIP) system to a single wall (hub in the subsea structure) system. End bulkheads are designed using detailed Finite Element Analysis (FEA) in accordance with more stringent Pressure Vessel Codes (PVC) and manufactured by forging followed by heat treatment and detailed machining to the required dimensions. As the design of end bulkheads does not fall under the Pipeline Codes, a distinction (so called "code break") may be required on where the governing code changes from the PVC to a Pipeline Code. This paper firstly discusses the application and validity of internationally known PVCs (ASME BPVC Section Ⅷ Division 2, BS EN 13445, PD 5500) that can be used in the design of end bulkheads. This is then shown in practice by using an example of a typical end bulkhead, designed to various PVCs. Finally, results are compared and conclusions and recommendations are made.
机译:管内管道(PIP)系统越来越多地用于主要目的是防止蜡沉积和/或水合物形成并获得较低的总传热系数(OHTC)值的系统。 PIP系统也越来越多地被视为防止密闭性丧失的额外保护层(例如在北极管道中)或抵御第三方的交互作用(例如拖网齿轮撞击)来代替昂贵的管道掩埋。在每个PIP部分的末端,无论是在中线连接处还是在端点连接处,都使用舱壁作为从双壁(PIP)系统过渡到单壁(海底结构中的轮毂)系统的方式。根据更严格的压力容器规范(PVC),使用详细的有限元分析(FEA)设计端部隔板,并通过锻造,热处理,详细加工至所需尺寸进行制造。由于端部舱壁的设计不属于“管道规范”,因此可能需要区别管理代码从PVC变为“管道规范”的位置(所谓的“代码中断”)。本文首先讨论了可用于端舱壁设计的国际知名PVC(ASME BPVC第2部分,BS EN 13445,PD 5500)的应用和有效性。然后,通过使用针对各种PVC设计的典型端部隔壁的示例,在实践中对此进行说明。最后,比较结果并提出结论和建议。

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