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NUMERICAL STUDY OF A HYBRID THERMAL INSULATION WITH PHASE CHANGE MATERIAL FOR SUBSEA PIPELINES

机译:浅埋管道相变材料混合绝热的数值研究

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Flow assurance is critical in offshore oil and gas production. Thermal insulation is an effective way to reduce heat loss from subsea pipelines and avoid the formation of hydrates or wax deposits that could block the flowlines. This paper presents a hybrid thermal insulation model with a combination of phase change material (PCM) and conventional insulating layers. The idea is to use PCM to store thermal energy with normal oil and gas production and release heat back to the fluids during a shut-in operation. Melting and solidification of the PCM layer is analyzed for different thicknesses at both working and shut-in conditions. The model is developed numerically using a Finite Volume Method (FVM) and an enthalpy porosity technique. It accounts for heat conduction with liquid-solid phase changes, as well as natural convection in the PCM. In this study, paraffin is implemented as PCM with temperature dependent properties while Aerogel is used as the conventional insulation layer. The results show that ticker PCM layer than conventional insulating layer can significantly improve thermal insulation performance, with extended cool-down time during flow line shut in.
机译:流量保证对于海上油气生产至关重要。隔热是减少海底管道热损失并避免形成可能阻塞流水线的水合物或蜡沉积物的有效方法。本文提出了一种混合热绝缘模型,其中包含相变材料(PCM)和常规绝缘层的组合。这个想法是使用PCM来存储正常的石油和天然气生产中的热能,并在关闭操作期间将热量释放回流体中。在工作和关闭条件下,针对不同的厚度分析PCM层的熔化和固化。使用有限体积法(FVM)和焓孔隙率技术对模型进行数值开发。它说明了液相-固相​​变化的热传导以及PCM中的自然对流。在这项研究中,石蜡作为具有温度依赖性的PCM实施,而气凝胶用作常规绝缘层。结果表明,与传统的绝热层相比,ticker PCM层可以显着改善绝热性能,并且在关闭流水线期间具有更长的冷却时间。

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