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FULL SCALE THERMAL TESTING OF A NEW FLOWLINE INTERVENTION SYSTEM

机译:全面的新流线干预系统的热测试

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The Electrically Trace Heated Blanket (ETH-Blanket) is a new offshore intervention/remediation system currently in development by TechnipFMC for the efficient remediation of plugs due to hydrates or wax in subsea production and injection flowlines. The ETH-Blanket consists of a network of heating cables placed underneath an insulation layer which is laid onto the seabed above the plugged flowline. By applying electrical power to the cables, heat is generated by Joule effect which warms up the flowline content until hydrate dissociation or wax plug remediation through softening or complete melting. As part of a Joint Industry Project (JIP) between TechnipFMC, Shell and Total, full-scale thermal testing of an ETH-Blanket prototype was carried out in Artelia facilities (in Grenoble, France). This testing was performed to verify the capability of the ETH-Blanket system to increase the temperature of the fluid inside a pipe sample above a target temperature (hydrate dissociation temperature or wax disappearance temperature) for various conditions. The impact of lateral misalignment of the ETH-blanket on the pipe and of the pipe burial depth were studied. Moreover, the tests were carried out on two pipe samples, with different designs and insulation properties. In parallel, CFD models of the test set-up were built to replicate the thermal behaviour of the ETH-Blanket. The combination of these models with the measured heating efficiency of the prototype allowed characterising the performances of the system in real subsea conditions. This paper presents the description of the full scale thermal testing conditions. Results of the different tests are detailed and the impact of the different parameters on the ETH-Blanket thermal performances are assessed, focusing on natural convection effects, thermal losses and the overall data gathering process.
机译:电迹线加热毯(Eth-leabet)是目前由TechnipFMC开发的新的海上干预/修复系统,以便在海底生产和注入流动线中的水合物或蜡的有效修复插头。 Eth-橡皮布包括一个置于绝缘层下方的加热电缆网络,该绝缘层被布置在堵塞的流线上方的海底上。通过向电缆施加电力,通过焦耳效果产生热量,该焦点效应使流动线含量加热,直到通过软化或完全熔化来加热处理或蜡塞修复。作为TechnipFMC,Shell和Total之间的联合行业项目(JIP)的一部分,在Artelia设施(法国格勒诺布尔)进行了Eth-毯子原型的全面热测试。进行该测试以验证Eth毛毯系统的能力,以使管样品内的流体的温度增加到目标温度(水合物离解温度或蜡消失温度)以进行各种条件。研究了横向未对准对管道和管道埋深的影响。此外,测试在两个管样品上进行,具有不同的设计和绝缘性。并行地,建立了测试设置的CFD模型以复制Eth毯的热行为。这些模型的组合具有所测量的原型的加热效率,允许在真实海底条件下表征系统的性能。本文介绍了全尺度热检测条件的描述。评估了不同测试的结果,并评估了不同参数对Eth毯热性能的影响,专注于自然对流效应,热损失和整体数据收集过程。

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