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Arithmetic solution for the axial vibration of drill string coupling with a down-the-hole hammer in rock drilling

机译:潜孔锤钻杆联轴器轴向振动的算术解决方案

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Down-the-hole hammer (DTH) drilling is an air hammer drilling technique designed for drilling through bedrock and features a typical drill string length of 200 m or shorter due to its technical specifications. During DTH drilling of granitelike hard rocks, the impacts of the piston-bit-rock system cause the drill string to generate severe vibration and noise pollution. In addition, the rapid wear of the button bit and drill string significantly decreases the drilling efficiency. Based on a distributed parameter drill string model of a DTH, this paper studies the phenomenon of the drill string's axial forced vibration with a periodic impacting force under DTH drilling in an innovative manner. With the focus of study on the DTH button bit, the transient impact force on the button bit during the drilling of the piston-bit-rock system is determined, and the impact force is converted to a periodic excitation force function using polynomial fitting. Then, the periodic impulse is transformed into a harmonic series using Fourier transforms, and finally, the drill string vibration response under the harmonic excitation force series is determined. The results reveal that a periodic impulse can mainly be determined by the nature of the DTH drill string and rock and the impact frequency during drilling. Further evidence demonstrates that at least one frequency component of the impulse harmonic series will be equal to the modal frequencies of the drill string insofar as the condition 2nf(0)l = i root E/rho is met; the coupling of the short drill string with the DTH may cause resonance at a specific hole depth, whose resonance regions are adjacent to but not continuous with the extension of the drill string. This work should serve as an important theoretical guide for designers in the dynamic design, modification, and use of a DTH drilling system.
机译:潜孔锤钻探(DTH)是一种气锤钻探技术,专为在基岩中钻探而设计,由于其技术规格,典型的钻柱长度为200 m或更短。在花岗岩类硬质岩石的潜孔钻探过程中,活塞-钻头-岩石系统的冲击导致钻柱产生严重的振动和噪声污染。另外,钮扣钻头和钻柱的快速磨损大大降低了钻孔效率。本文基于DTH的分布式参数钻柱模型,以创新的方式研究了DTH钻进条件下钻柱轴向受力周期性振动的现象。通过对潜孔锤钻头的研究,确定了在钻头钻头-岩石系统钻孔过程中对钻头的瞬态冲击力,并使用多项式拟合将冲击力转换为周期性激振力函数。然后,使用傅立叶变换将周期性脉冲转换为谐波序列,最后确定谐波激励力序列下的钻柱振动响应。结果表明,周期性冲动主要取决于潜孔锤钻柱和岩石的性质以及钻进过程中的冲击频率。进一步的证据表明,只要满足条件2nf(0)l = i根E / rho,则脉冲谐波序列的至少一个频率分量将等于钻柱的模态频率。短钻柱与DTH的耦合可能会在特定的孔深度处引起共振,其特定的共振区域与钻柱的延伸区域相邻但不连续。这项工作应该为设计人员进行动态设计,修改和使用DTH钻井系统提供重要的理论指导。

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