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Numerical Study of Trapped Solid Particles Displacement From the Elbow of an Inclined Oil Pipeline

机译:倾斜油管道肘部捕获固体颗粒位移的数值研究

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摘要

The solid particle impurities generated by pipe wall corrosion might deposit at the elbow of hilly pipelines during the production shutdown of oil pipelines.These solid particle impurities will seriously affect the safety of the pipeline operation and the quality of the petroleum products.Thus,it is necessary to study the methods of removing these trapped particles from pipelines.At present,the most common way to remove these solid particle impurities is pigging oil pipelines periodically by utilizing the mechanical pigging method,while the frequent pigging operation will increase the cost and risk of pipeline operation.It is very convenient and economical to remove the accumulated particles out from the pipeline by oil stream,which can be named Hydraulic Pigging Method(HPM).However,the behavior mechanism of particle in flowing oil is still unclear.This motivates the present research on the particles flushed out by the flowing oil.A numerical model governing the trapped particles displacement from the elbow of an inclined oil pipeline is established in the Euler-Lagrangian framework.The simulation is achieved via CFD coupling with DEM.The CFD method is employed to solving the continuous phase flow,while the discrete particle phase is tracked by the DEM.The numerical model is first validated by comparison with results taken from the published literature.From the simulation results,it is observed that the oil stream,carrier phase,can only flush out the solid particles in a certain diameter range under the given operation conditions,and the particles whose diameter beyond that diameter range will cannot be removed out from the pipeline.The influence of the pipe inclined angle,the oil bulk velocity and the particle diameter on the particle migration characteristics is examined in detail.Furthermore,in order to enhance the efficiency of HPM,an Enhanced Hydraulic Pigging Method based on Multi-Physical Field Collaboration(EHPM-MPFC)is also proposed in the present work.The EHPM-MPFC is validated for having high pigging efficiency via the comparison of the migration characteristics of particles during the EHPM-MPFC and HPM process.The present results can provide the guidance to the HPM operation of products pipelines.
机译:通过管壁腐蚀产生的固体颗粒杂质可能会在油管道的生产关闭期间在丘陵管道的肘部沉积。可固体颗粒杂质将严重影响管道运行的安全性和石油产品的质量。属研究从管道中除去这些被困颗粒的方法。目前,除去这些固体颗粒杂质的最常见方法是通过利用机械流量的方法来定期排水管道,而频繁的流动操作将增加成本和风险管道操作是非常方便和经济的,通过油流从管道中除去累积的粒子,这可以是液压小猪(HPM)。然而,流动油中的粒子的行为机制仍然不清楚。这一目标通过流动油冲洗颗粒的目前研究。控制捕获粒子的数值模型从欧拉拉格朗安框架中建立了倾斜油管道的弯头的调节。通过与DEM的CFD耦合实现的模拟。采用CFD方法求解连续相流,而DEM跟踪离散粒子阶段。通过比较来自公开文献的结果,首先验证数值模型。从模拟结果中,观察到油流,载体相,只能在给定的操作条件下嵌入一定直径范围内的固体颗粒。 ,并且其直径范围的直径不能从管道中除去的颗粒。将管倾斜角度,油部速度和粒径对颗粒迁移特性的影响进行详细研究。用热疗,以便增强了HPM的效率,在本工作中还提出了一种基于多物理场协作(EHPM-MPFC)的增强液压小型方法。通过比较EHPM-MPFC和HPM过程中颗粒的迁移特性进行验证,验证了EHPM-MPFC。目前的结果可以为产品管道的HPM操作提供指导。

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  • 来源
    《工程与科学中的计算机建模(英文)》 |2019年第010期|P.273-290|共18页
  • 作者单位

    Beijing Key Laboratory of Urban Oil and Gas Distribution Technology China University of Petroleum-Beijing Beijing 102249 China;

    Department of Mechanical and Aerospace Engineering University of California San Diego 9500 Gilman Drive La Jolla CA 92093 USA;

    Beijing Key Laboratory of Urban Oil and Gas Distribution Technology China University of Petroleum-Beijing Beijing 102249 China;

    Beijing Key Laboratory of Urban Oil and Gas Distribution Technology China University of Petroleum-Beijing Beijing 102249 China;

    Department of Engineering Mechanics Tsinghua University Beijing 100084 China;

    Beijing Key Laboratory of Urban Oil and Gas Distribution Technology China University of Petroleum-Beijing Beijing 102249 China;

    Beijing Key Laboratory of Urban Oil and Gas Distribution Technology China University of Petroleum-Beijing Beijing 102249 China;

    SINOPEC Sales Company South China Branch Guangzhou 510620 China.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 中国工业经济;
  • 关键词

    Particle displacement; hydraulic pigging method; CFD-DEM coupling; multi-physical field;

    机译:颗粒位移;液压流动方法;CFD-DEM耦合;多物理领域;
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