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Optimal Design Parameters of a Percussive Drilling System for Efficiency Improvement

机译:冲击钻进系统的优化设计参数以提高效率

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This paper aims to determine the optimal design parameters for percussive drilling systems considering the bit-rock interaction. First, the motion dynamics of a bit impacted by a dropped piston are modeled by impact stress propagation and a rock-breaking mechanism representing the penetration resistance coefficient and unloading constant. Next, the damping vibration behavior of the bit is investigated considering the impact duration and the rock loading/unloading condition. In addition, the proposed dynamics are simplified by adopting two dimensionless parameters representing the bit-piston mass ratio and the rock-piston stiffness ratio. Finally, the drilling efficiency, defined by the energy transmitted from the piston to the rock, is presented in terms of the proposed parameters. The use of optimal design parameters for percussive drilling systems improved the drilling efficiency. These results are applicable to the design and performance estimation of down-the-hole and top-hammer systems.
机译:本文旨在确定考虑钻头-岩石相互作用的冲击钻进系统的最佳设计参数。首先,通过冲击应力传播和代表穿透阻力系数和卸载常数的破岩机制,对掉落的活塞撞击的钻头的运动动力学进行建模。接下来,考虑冲击持续时间和岩石装载/卸载条件,研究钻头的阻尼振动行为。此外,通过采用两个无量纲的参数来代表钻头活塞质量比和岩石活塞刚度比,简化了所提出的动力学。最后,根据所提出的参数,提出了由从活塞传输到岩石的能量所定义的钻井效率。在冲击钻进系统中使用最佳设计参数可以提高钻进效率。这些结果可用于井下和顶锤系统的设计和性能评估。

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