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Self-Oscillation Pulsed Percussive Rotary Tool Enhances Drilling Through Hard Igneous Formations

机译:自振荡脉冲冲击式旋转工具通过硬质滴成模块增强钻孔

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As hydrocarbon development goes deeper and more complex in Songliao Basin, drilling engineering has been put at the forefront of cost reduction and efficiency enhancement. The unique challenges resulted from high abrasiveness in hard igneous formations have triggered years of efforts for cost-effective percussive rotary drilling technology. This paper will highlight the development and application of a self-oscillation pulsed percussive tool, with in-depth analysis of its active mechanism and numerical modeling results of pressure and velocity distribution inside the self-oscillation chamber. A two-stage oscillator designed on acoustic philosophy is introduced in the tool to create hydraulic pulse after resonance, feedback, frequency selection and amplification of high speed flow downhole. The pulse immediately induces the periodic impact against bit with high frequency and low amplitude using an appropriate hydraulic energy transfer structure. The pulsed jet, mechanical percussion and rotation are integrated to enhance breaking of hard rocks. The vibration frequency, peak value and amplitude can be adjusted with respect to oscillator geometry, size of drive spindle, and the distance between oscillator outlet and spindle top. The elimination of moving part like conventional percussion hammer significantly simplifies tool structure, allowing better assurance of security and reliability in harsh environment. Primary test in South Songliao and extended application in Sichuan and Tarim Basin demonstrate that the tool can deliver improved ROP by 20%-36% compared with offset wells, prolonged percussion durability of more than 150 hours, enhanced deviation control capability, favorable erosion resistance and HT resistance rated to 200°C. Meanwhile, the pulsed jet through bit nozzles helps to improve hole cleaning and decrease rock’s fracture strength. The tool and related operational procedure provides a new enabler to conquer drilling challenges in igneous rocks, as well as in tight shale, sandstone and huge-layer of gravel encountered in China.
机译:随着碳氢化合物的发展在松辽盆地更深,更复杂,钻井工程已经以成本降低和效率增强的最前沿。由于硬质型磨削的高磨损导致的独特挑战引发了多年的努力,用于经济高效的冲击旋转钻井技术。本文将突出自振荡脉冲振兴工具的开发和应用,深入分析其活跃机制和自振荡室内压力和速度分布的数值模拟结果。在工具中引入了一个设计在声学哲学的两级振荡器,在井下共振,反馈,频率选择和放大后产生液压脉冲。使用适当的液压能量转印结构,脉冲立即与高频和低振幅引起对位的周期性冲击。脉冲射流,机械打击乐和旋转集成以增强硬岩的破坏。可以相对于振荡器几何形状,驱动轴尺寸和振荡器出口和主轴顶部之间的距离来调节振动频率,峰值和幅度。像传统的冲击锤一样消除运动部件显着简化了刀具结构,允许更好地保证恶劣环境中的安全性和可靠性。南松辽的初级试验和四川和塔里木盆地的扩展应用表明,该工具可以将改善的ROP递送20%-36%,与偏移井相比,长时间的打击耐久性超过150小时,增强偏离控制能力,抗腐蚀性,耐腐蚀性耐腐蚀性HT电阻率为200°C。同时,脉冲射流通过钻头喷嘴有助于改善孔清洁和降低岩石的断裂强度。该工具和相关操作手术提供了一种新的推动者,以征服在黄昏的岩石中欺骗钻探挑战,以及在中国遇到的紧身页岩,砂岩和巨大的砾石。

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