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首页> 外文期刊>Journal of Materials Processing Technology >A coupled temperature-displacement model for predicting the long-term performance of offshore pipeline insulation systems
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A coupled temperature-displacement model for predicting the long-term performance of offshore pipeline insulation systems

机译:耦合温度-位移模型预测海上管道保温系统的长期性能

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Insulation systems for offshore oil and gas pipelines operate in aggressive environments over lifetimes of about 20 years. The effectiveness of the insulation over the entire lifetime is essential to provide flow assurance. Fluid temperatures must be kept high enough to ensure that waxes or hydrates do not form and result in pipeline blockages. The operating environment for offshore pipelines will become more severe with planned developments in 2000m waters having well temperatures of up to 160℃. Insulation systems proposed for such deepwater wells are typically multilayered with foamed polymers providing most of the thermal resistance. The high hydrostatic pressures and well temperatures associated with deepwater wells can lead to a degradation of the thermal performance of foamed materials due to creep. The prediction of the long-term thermal behaviour is complex. The material characteristics of foams are dependent on the density, temperature and stress level, all of which change with time as the material creeps. This leads to a non-linear coupled thermal-structural response. This paper describes analytical models, which predict the system behaviour over time. These models have been implemented in a user-friendly design tool, named DISDANS. Good agreement is found between the model results and equivalent finite element models.
机译:用于海上石油和天然气管道的绝缘系统在恶劣的环境中运行约20年。绝缘在整个使用寿命中的有效性对于提供流量保证至关重要。流体温度必须保持足够高,以确保不会形成蜡或水合物并导致管道堵塞。计划在井温高达160℃的2000m水域中进行开发,海上管道的操作环境将变得更加严峻。建议用于这种深水井的隔热系统通常是多层泡沫聚合物,可提供大部分的热阻。与深水井有关的高静水压力和井温会由于蠕变而导致泡沫材料的热性能下降。长期热行为的预测很复杂。泡沫的材料特性取决于密度,温度和应力水平,所有这些都随材料蠕变而随时间变化。这导致非线性耦合的热结构响应。本文介绍了分析模型,这些模型可预测一段时间内的系统行为。这些模型已在名为DISDANS的用户友好设计工具中实现。在模型结果和等效的有限元模型之间找到了很好的一致性。

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