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Investigating the Impact of the“Tool Joint Effect”on Equivalent Circulating Density in Deep-Water Wells

机译:调查“工具关节效应”对深水井等同循环密度的影响

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Precise prediction of Equivalent Circulating Density(ECD)is one of the most important challenges during drilling operations.This becomes more vital in deep-water offshore wells in which formation pressure is very close to the fracture pressure.In addition,techniques such as Managed Pressure Drilling(MPD)rely on the precise estimation of frictional pressure losses. Although many theoretical and experimental studies have been conducted on fluid flow through pipes and annuli to predict the pressure losses,majority of them undermine or simply ignore the effect of tool joints.A few studies that take the effect of tool joints into account indicate that it can have significant effect on pressure loss.Therefore,there is a strong need to determine the amount of additional pressure loss caused by the tool joints. This paper presents a Computational Fluid Dynamics(CFD)approach to investigate the effect of tool joint on annular pressure losses.The utilized software package in this simulation study uses Finite Volume methods to solve the problem.The effects of important parameters such as flow rate,mud type,mud weight and mesh size are investigated.The pressure loss in the annuli,with and without tool joint,is obtained and additional pressure loss due to presence of tool joint is calculated accordingly. Simulation results show that the ratio of annular pressure loss with tool joints to the pressure loss without tool joints()strongly depends on the flow regime.In Laminar flow,this ratio remains relatively constant,regardless of the type of the drilling fluid.In turbulent flow,it increases rapidly with increasing Reynolds number and can be precisely estimated by the proposed correlation.It has been found that in deep offshore wells and high range of operational flow rate,the additional pressure loss due to tool joints can be as high as 30%of the total frictional pressure loss and must be taken into consideration during ECD calculations.
机译:等效循环密度(ECD)的精确预测是钻井作用期间最重要的挑战之一。这种在深水近海井中变得更加重要,其中形成压力非常接近断裂压力。添加,诸如管理压力的技术钻井(MPD)依赖于摩擦压力损失的精确估计。虽然已经在流体流经管道上进行了许多理论和实验研究,以预测压力损失,但其中大部分破坏或简单地忽略工具关节的效果。一些研究刀具接头效果的研究表明它表明它对压力损失产生显着影响。因此,有强烈需要确定由工具接头引起的额外压力损失量。本文提出了一种计算流体动力学(CFD)方法来研究工具接头对环形压力损失的影响。该仿真研究中的利用软件包使用有限卷方法来解决问题。重要参数如流量,研究了泥型,泥浆重量和网眼尺寸。随着工具接头的存在,获得了云,有和没有工具接头的压力损失,并且相应地计算出刀具接头的额外压力损失。仿真结果表明,无需工具接头()的刀具接头与压力损失与压力损失的比率强烈取决于流动状态。在流动的流动中,这种比率仍然相对恒定,无论钻井液的类型如何。湍流流动,随着雷诺数的增加,可以通过增加的相关性估计。已经发现,在深度近海井和高范围的运行流速中,由于工具接头引起的额外压力损失可以高达30在ECD计算过程中,总摩擦压力损失的百分比必须考虑。

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