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CHARACTERIZATION OF A PULSATING DRILL BIT BLASTER

机译:表征脉动钻头吹口机

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The drill bit blaster (DBB) studied in this paper aims to maximize the drilling rate of penetration (ROP) by using a flow interrupting mechanism to create drilling fluid pulsation. The fluctuating fluid pressure gradient generated during operation of the DBB could lead to more efficient bit cutting efficiency due to substrate depressurization and increased cutting removal efficiency and the vibrations created could reduce the drill string friction allowing a greater weight on bit (WOB) to be achieved. In order to maximize these mechanisms the effect of several different DBB design changes and operating conditions was studied in above ground testing. An analytical model was created to predict the influence of various aspects of the drill bit blaster design, operating conditions and fluid properties on the bit pressure characteristics and compared against experimental results. The results indicate that internal tool design has a significant effect on the pulsation frequency and amplitude, which can be accurately modeled as a function of flowrate and internal geometry. Using this model an optimization study was conducted to determine the sensitivity of the fluid pulsation power on various design and operating conditions. Application of this technology in future designs could allow the bit pressure oscillation frequency and amplitude to be optimized with regard to the lithology of the formations being drilled which could lead to faster, more efficient drilling potentially cutting drilling costs and leading to a larger number of oil and natural gas plays being profitable.
机译:在本文中研究的钻头间谍(DBB)旨在通过使用流动中断机制来产生钻孔流体脉动的钻孔(ROP)的钻井率。在DBB的操作期间产生的波动流体压力梯度可能导致由于基板减压而导致更有效的比特切割效率,并且增加的切割去除效率和产生的振动可以减少钻头摩擦,从而实现钻头(WOB)更大的重量达到待实现的钻头摩擦。为了最大化这些机制,在地面测试中研究了几种不同的DBB设计变化和操作条件的效果。创建了一个分析模型,以预测钻头Blaster设计,操作条件和流体性质对比特压力特性的各个方面的影响,并与实验结果进行比较。结果表明,内部工具设计对脉动频率和幅度具有显着影响,可以精确地建模为流量和内部几何形状。使用该模型进行了优化研究以确定流体脉动功率对各种设计和操作条件的灵敏度。在未来的设计中的应用可以在未来的设计中应用比特压力振荡频率和幅度在钻探的地层的岩性方面进行优化,这可能导致更快,更高效的钻井潜在地切割钻井成本并导致更大数量的油天然气扮演有利可图。

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