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Fluidic Drag Estimation in Horizontal Directional Drilling Based on Flow Equations

机译:基于流动方程的水平定向钻井流体阻力估算

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Horizontal directional drilling (HDD) is a trenchless technology used to install underground utilities. The force required to pull a pipe through the borehole during installation is crucial to design engineers. Various methods have been proposed to estimate the pullback load, each dealing with fluidic drag in a different way. Limitations in fluidic drag estimation by current design procedures have revealed the significance of having a reliable method for calculation. This paper proposes a new method to calculate fluidic drag based on annular flow equations. This method is used to calculate viscous drag for two HDD case studies, and the results are compared to the estimations by current methods, such as PRCI and ASTM F1962. Pullback load estimation based on the new method agrees well with the actual installation loads. This paper also investigates the impact of design factors on fluidic drag by presenting a sensitivity analysis over a practical range of related parameters. The ratio of pipe radius to borehole radius is observed to have the most influence on fluidic drag.
机译:水平定向钻探(HDD)是一种用于安装地下公用设施的非开挖技术。在安装过程中将管道从钻孔中拉出所需的力对设计工程师至关重要。已经提出了各种方法来估计回拉载荷,每种方法以不同的方式处理流体阻力。当前设计程序在流体阻力估计中的局限性揭示了具有可靠的计算方法的重要性。本文提出了一种基于环流方程的流体阻力计算方法。此方法用于计算两个HDD案例研究的粘性阻力,并将结果与​​当前方法(例如PRCI和ASTM F1962)的估计值进行比较。基于新方法的回拉载荷估算与实际安装载荷吻合良好。本文还通过对相关参数的实际范围进行敏感性分析,研究了设计因素对流体阻力的影响。观察到管道半径与钻孔半径的比率对流体阻力具有最大的影响。

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