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FATIGUE DESIGN OF FLOWLINE SYSTEMS WITH SLUG FLOW

机译:团状流流线系统的疲劳设计

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Hydraulic sizing of multiphase flowlines generally leads to significant potential for slug formation. The dynamic loads from the passage of slugs through bends are well understood. Gravity load effects associated with changing contents density are less widely recognised, but potentially more significant. Multiphase flowlines can experience several slugs every minute, which can lead to high cycle fatigue damage.Slug-induced fatigue damage has emerged as a governing design criterion in recent projects. Spans, rather than pipe bends, have become the focus of attention for slug-induced fatigue damage. These may occur at flowline terminations and spool-pieces used to connect flowlines in deepwater developments. Spans introduced by lateral buckling mitigation features can be particularly difficult to protect against slug-induced fatigue.This paper defines the slug-induced fatigue problem, and presents techniques for predicting fatigue damage during design. It describes analysis of pipeline spans, flowline connection spools and spans at buckle mitigation sleepers. Design recommendations are proposed, with suggestions for follow-up investigations to improve understanding of this phenomenon.
机译:多相流水线的水力定径通常会导致形成团块的巨大潜力。弹头穿过弯头的动载荷已广为人知。与内容物密度变化相关的重力载荷效应尚未得到广泛认可,但可能更为显着。多相流水线每分钟可能经历数次塞流,这可能导致高周疲劳破坏。 在最近的项目中,由弹头引起的疲劳损伤已成为一种主要的设计标准。塞子引起的疲劳损伤已成为关注的焦点,而不是弯管。这些可能会发生在深水开发中用于连接流水线的流水线终端和线轴件处。由横向屈曲缓解特征引入的跨度特别难于防止因段塞引起的疲劳。 本文定义了块引起的疲劳问题,并提出了在设计过程中预测疲劳损伤的技术。它描述了对缓解弯枕的管道跨度,流线连接阀芯和跨度的分析。提出了设计建议,并建议进行后续调查,以增进对该现象的理解。

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