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EFFECT OF PIPELINE THERMAL EXPANSION ON DIRECT ELECTRIC HEATING CABLE

机译:管道热膨胀对直接电加热电缆的影响

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Subsea Direct Electrical Heating (DEH) of pipelines has been in operation for more than 10 years and is therefore considered by most Operators as proven technology. Aside from the electrical aspects, there are mechanical design challenges with installing a cable piggyback fashion onto a HPHT flowline that expands and contracts with the temperature of the flowing wellstream. The cable may also need protection against fishing gear which becomes an integral part of the DEH pipeline system. Depending on the pipeline operating temperature, the DEH cable may experience excessive axial tensile strain due to thermal expansion and global buckling unless sufficient cable overlength is incorporated during pipeline installation. The cable will be subjected to additional strains at a thermal buckle location when subject to trawl gear pullover. During DEH cable operation, the flowline will initially be cold and contracted but the cable expands due to heating of the cable itself, adding to any installed compression to provide overlength. The following study has been performed to investigate strains in the cable and pipeline due to their responses to thermal and trawlboard loads and to determine the required overlength to keep the cable within strain limits. Finite Element models of the flowline with piggybacked DEH cable was developed with both ANSYS and ABAQUS in order to analyse their interaction during installation and operation on the seabed. The influence of friction between cable and protection system, and position of the cable on the flowline was simulated in order to quantify the required overlength to be installed during pipelay to avoid overstraining the cable in tension as well as compression.
机译:管道的海底直接电加热(DEH)已经运行了10多年,因此,大多数运营商认为这是行之有效的技术。除电气方面外,在将电缆背负式方式安装到HPHT流水线上以随流动的井流温度进行伸缩的情况下,还存在机械设计挑战。电缆可能还需要保护以防渔具,而渔具已成为DEH管道系统的组成部分。取决于管道的工作温度,DEH电缆可能会因热膨胀和整体弯曲而承受过度的轴向拉伸应变,除非在管道安装过程中引入足够的电缆长度。当受到拖网齿轮套接时,电缆将在热扣位置处承受额外的应变。在DEH电缆运行期间,出油管最初会变冷并收缩,但由于电缆本身的发热,电缆会膨胀,从而增加了安装的压缩力以提供超长的长度。进行了以下研究,以研究由于电缆和管道对热载荷和拖网板载荷的响应而引起的应变,并确定将电缆保持在应变范围内所需的超长长度。利用ANSYS和ABAQUS开发了带有背负式DEH电缆的流水线的有限元模型,以分析它们在海底安装和运行期间的相互作用。模拟了电缆与保护系统之间的摩擦力以及电缆在流线上的位置的影响,以便量化在铺管过程中安装所需的超长长度,以避免在拉伸和压缩过程中过度拉伸电缆。

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