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Transient Wax Gel Formation Model for Shut-In Subsea Pipelines

机译:封闭式海底管道的瞬态蜡凝胶形成模型

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摘要

Physics of wax gel formation during shut-in is analyzed and described over a cross-section of a typical subsea pipeline. Two regions are identified during this process: the liquid and gel regions. Phase transition is assumed to occur at the liquid-gel interface. Unsteady-state heat and mass transfer models are proposed for each region. Two diffusion streams are evaluated: the dissolved wax molecules moving from the pipe center toward the wall due to temperature gradient and subsequently concentration gradient and the wax molecules diffusing from the liquid-gel interface into the gel deposit. This model is essentially the modification of the model given by Bhat et al. [1] which considered transient heat transfer and neglected mass transfer of wax molecules through the gel deposit and the model by Singh et al. [2] which considered transient mass transfer of molecules with carbon numbers higher than the critical carbon number (CCN) necessary for wax diffusion into gel deposit but did not consider transient heat transfer effects during the cooling process. This paper presents a transient-state formulation circumventing the limitations of these previous models and better represents the true cooling and gelation process occurring in a shut-in subsea pipeline filled with waxy crude.
机译:在典型的海底管道的横截面上分析并描述了封井过程中蜡凝胶形成的物理过程。在此过程中,确定了两个区域:液体和凝胶区域。假定在液体-凝胶界面发生相变。针对每个区域提出了非稳态传热和传质模型。评估了两种扩散流:由于温度梯度和随后的浓度梯度,溶解的蜡分子从管中心向壁移动,并且蜡分子从液-凝胶界面扩散到凝胶沉积物中。该模型实质上是对Bhat等人给出的模型的修改。文献[1]考虑了瞬态传热和忽略的蜡分子通过凝胶沉积物的传质和Singh等人的模型。 [2]考虑了碳数高于蜡扩散到凝胶沉积物中所必需的临界碳数(CCN)的分子的瞬态传质,但没有考虑冷却过程中的瞬态传热效应。本文介绍了一种瞬态状态配方,它克服了这些先前模型的局限性,更好地表示了在充满蜡质原油的封闭式海底管道中发生的真实冷却和胶凝过程。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2011年第3期|p.033001.1-033001.5|共5页
  • 作者单位

    University of Oklahoma Norman, OK;

    University of Oklahoma Norman, OK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:30:17

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