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Heat transfer and multiphase flow with hydrate formation in subsea pipelines

机译:海底管道中形成水合物的传热和多相流

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摘要

A new predictive model is developed to analyze hydrate formation with coupled heat and mass transfer in a pipe. The model tracks the particle velocity at each time step, while estimating the growth of the hydrate using the change in Biot number and dimensionless time. The numerical results are validated experimental results for R134a hydrates. The effects of change in heat transfer ratio, phase change number, superheating, and pipe diameter on hydrate formation are reported in this paper. The results indicate that higher heat transfer ratio between the internal and external fluids reduces the possibility of hydrates creating a blockage in the pipeline. The pipes with smaller diameters are also found to reduce the possibility of hydrate formation at a constant pipeline pressure. The results show that at temperatures below −10 °C, changing thermophysical properties have limited impact on the rate of hydrate formation in the pipe.
机译:开发了一种新的预测模型,以分析管道中传热与传质耦合的水合物形成。该模型跟踪每个时间步的粒子速度,同时使用Biot数和无因次时间的变化估算水合物的生长。数值结果验证了R134a水合物的实验结果。本文报道了传热比,相变数,过热度和管径的变化对水合物形成的影响。结果表明,内部和外部流体之间较高的传热比降低了水合物在管道中形成堵塞的可能性。还发现直径较小的管道可减少在恒定管道压力下形成水合物的可能性。结果表明,在低于-10°C的温度下,不断变化的热物理性质对管道中水合物的生成速率的影响有限。

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  • 来源
    《Heat and Mass Transfer》 |2015年第7期|901-909|共9页
  • 作者

    A. Odukoya; G. F. Naterer;

  • 作者单位

    Faculty of Engineering and Applied Science Memorial University of Newfoundland">(1);

    Faculty of Engineering and Applied Science Memorial University of Newfoundland">(1);

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  • 正文语种 eng
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