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OPTIMIZATION OF PIPE INSULATION VOLUME FOR A SUBSEA PRODUCTION SYSTEM

机译:地面生产系统的管道绝缘体积的优化

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The increasing of deepwater oil field developments brings a growing need for thermal management to prevent hydrate and wax formations in the subsea production system, due to the low environment temperature and long distance transportation. Pipeline insulation coating is a typical strategy for thermal management. In a subsea production system, pressure, temperature, flow rate and length of each flowline vary, leading to a different thermal performance of the fluid inside. Therefore, the insulation coating should be carefully designed from the overall perspective to minimize the total material volume, thus reducing the cost. In this paper, an optimization model for the insulation material volume of a wellhead-manifold-FPSO production system is proposed. Then, the best insulation thickness of each subsea flowline can be determined under given flow parameters and temperature requirements. The factor that defines the temperature drop from riser base to the top termination is introduced and analyzed. There is a proper temperature drop factor associated with the insulation material volume for subsea flowlines, as well as a proper insulation capacity for the risers. This optimization model can define the subsea system insulation and provide reliable results for cost estimation.
机译:由于环境温度低和长距离运输,深水油田开发的增加带来了对热管理的需求,以防止海底生产系统中的水合物和蜡形成。管道隔热涂层是一种典型的热管理策略。在海底生产系统中,每条流水线的压力,温度,流量和长度都会变化,从而导致内部流体的热性能不同。因此,应从整体角度仔细设计绝缘涂层,以最大程度地减少材料总量,从而降低成本。提出了井口歧管FPSO生产系统保温材料体积的优化模型。然后,可以在给定的流量参数和温度要求下确定每个海底流水线的最佳绝缘厚度。引入并分析了定义从立管底部到顶部终端的温度下降的因素。对于海底出油管,与隔热材料的体积有关的温度降落系数应适当,而立管的隔热能力也应与之适当。该优化模型可以定义海底系统的隔热层,并为成本估算提供可靠的结果。

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