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Experimental Research on the Particles Reflux in the Particle Impact Drilling System

机译:粒子冲击钻井系统中粒子回流的实验研究

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Particle Impact Drilling technology (PID) is a new drilling technology, which is designed especially to solve the oil and gas exploration under hard terrane. In PID system, the steel particles were added in the drilling fluid to impact rock. The particles would be recycled and put to use again, thus it is of great significance to adjust proper drilling fluid flow rate for steel particle's reflux. The flow rate of drilling fluids carrying particles is influenced by the fluid viscosity, the annular gap between drill pipe and wellbore, the particle volume fraction and particle size, etc. This paper mainly studied the influence of the annular gap and the flow rate, while the other factors keep constant. Both experimental method and dimension theory were employed in the research. Furthermore, empirical formula was proposed to describe the mechanism.
机译:粒子冲击钻井技术(PID)是一种新的钻井技术,专门设计,特别是解决硬滴车下的石油和天然气勘探。在PID系统中,在钻井液中加入钢颗粒以冲击岩石。颗粒将再循环并再次使用,因此调整钢颗粒回流的适当钻井液流速具有重要意义。携带颗粒的钻孔流体的流速受到流体粘度的影响,钻管和井筒之间的环形间隙,粒子体积分数和粒度等。本文主要研究了环形间隙和流速的影响其他因素保持不变。研究中使用了实验方法和维度理论。此外,提出了经验公式来描述该机制。

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