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LOW CYCLE FATIGUE OF SUBSEA MECHANICALLY LINED PIPELINE WITH LINER IMPERFECTIONS

机译:衬砌缺陷的浅壁机械衬砌管道的低循环疲劳

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There is an ever-increasing demand for subsea transport of corrosive constituents which requires the use of corrosion resistant pipelines. This has generated interest in mechanically lined pipe (MLP) which consists of carbon steel pipe lined with a thin layer of corrosion resistant alloy (CRA), typically stainless steel. The CRA liner is adhered to the backing pipe by means of an interference fit. MLPs have been traditionally installed subsea using low strain methods such as towing, S-lay or J-lay. More recently, the efficient reel-lay method, typically used for pipelines up to 18" (457.2 mm) in diameter, has also been considered. To prevent damage to the MLP during high strain bending (i.e. wrinkling of CRA the liner) and thus allow reel-lay installation, TechnipFMC has qualified reeling of MLPs at ambient and elevated pressures. The ambient reeling approach, where the liner thickness is increased to prevent wrinkling during reeling, is appropriate for smaller diameter MLPs. For larger pipelines, it is generally more cost-effective to pressurise the MLP during reeling. Concerns have been expressed that liner imperfections such as small dents or wrinkles, introduced during manufacturing, installation or service, may compromise the integrity of the MLP subjected to high in-service cyclic loading. Therefore, this study was undertaken to examine the criticality of such flaws and determine the low cycle fatigue endurance of reeled MLPs with imperfections. First, a numerical study was undertaken to estimate in-service stress/strain ranges in the MLPs with liner flaws. Subsequently, small scale tests were carried out to quantify the fatigue performance of such MLPs. The obtained results confirmed that there is a negligible risk of failure of MLP flowlines due to crack initiation at liner imperfections and subsequent breach of the CRA layer, even for pipelines subjected to very severe in-service cyclic loading.
机译:对于海底运输腐蚀性成分的需求不断增长,这要求使用耐腐蚀的管道。这引起了对机械衬里管道(MLP)的关注,该管道由衬有薄薄一层耐腐蚀合金(CRA)(通常为不锈钢)的碳钢管组成。 CRA衬管通过过盈配合粘附在衬管上。 MLP传统上是使用拖曳,S形或J形等低应变方法在海底安装的。最近,还考虑了通常用于直径达18英寸(457.2毫米)的管道的有效卷盘敷设方法。为防止在高应变弯曲(即CRA衬里起皱)期间损坏MLP,因此允许卷盘安装,TechnipFMC具有在常压和高压下对MLP进行合格卷盘的方法。常开卷盘方法通过增加衬套厚度以防止卷盘时起皱,适用于直径较小的MLP。在卷取过程中对MLP加压具有成本效益;人们担心,在制造,安装或维修过程中引入的衬里缺陷(例如小凹痕或皱纹)可能会损害在高使用周期载荷下MLP的完整性。进行这项研究以检查此类缺陷的严重性,并确定具有缺陷的带卷MLP的低循环疲劳强度。进行估计带有衬套缺陷的MLP的使用应力/应变范围。随后,进行了小规模测试以量化此类MLP的疲劳性能。获得的结果证实,即使对于承受非常严重的在役循环载荷的管道,由于衬里缺陷处的裂纹引发以及随后的CRA层破裂,MLP流线失效的风险也可以忽略不计。

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