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Numerical Simulation of Barite Sag in Pipe and Annular Flow

机译:管和环状流中重晶石凹陷的数值模拟

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摘要

With the ever increasing global energy demand and diminishing petroleum reserves, current advances in drilling technology have resulted in numerous directional wells being drilled as operators strive to offset the ever-rising operating costs. In as much as deviated-well drilling allows drillers to exploit reservoir potential by penetrating the pay zone in a horizontal, rather than vertical, fashion, it also presents conditions under which the weighting agents can settle out of suspension. The present work is categorized into two parts. In the first part, governing equations were built inside a two-dimensional horizontal pipe geometry and the finite element method utilized to solve the equation-sets. In the second part, governing equations were built inside a three-dimensional horizontal annular geometry and the finite volume method utilized to solve the equation-sets. The results of the first part of the simulation are the solid concentration, mixture viscosity, and a prediction of the barite bed characteristics. For the second part, simulation results show that the highest occurrence of barite sag is at low annular velocities, nonrotating drill pipe, and eccentric drill pipe. The CFD approach in this study can be utilized as a research study tool in understanding and managing the barite sag problem.
机译:随着全球能源需求的不断增长和石油储量的减少,钻井技术的最新发展已导致许多定向井的钻探,因为运营商努力抵消不断上涨的运营成本。在尽可能多的偏井钻井中,钻井者可以通过以水平而不是垂直的方式穿透产油层来开发储层潜力,这也提出了加重剂可以从悬浮液中沉降出来的条件。目前的工作分为两部分。在第一部分中,控制方程是在二维水平管道几何结构内建立的,并使用有限元方法求解方程组。在第二部分中,在三维水平环形几何体内部建立了控制方程,并使用有限体积方法求解方程组。模拟的第一部分的结果是固体浓度,混合物粘度和重晶石床特性的预测。对于第二部分,模拟结果表明,重晶石下垂的发生率最高是在低环形速度,非旋转钻杆和偏心钻杆下。本研究中的CFD方法可用作研究研究工具,以了解和管理重晶石下陷问题。

著录项

  • 来源
    《Advances in numerical analysis》 |2017年第2017期|2672438.1-2672438.20|共20页
  • 作者

    Patrick Kabanda; Mingbo Wang;

  • 作者单位

    Department of Drilling Engineering China University of Petroleum (East China), Qingdao 266580, China;

    Department of Drilling Engineering China University of Petroleum (East China), Qingdao 266580, China;

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  • 正文语种 eng
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