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Study on Mechanism of Hammer Bit and Rock Interaction in Geophysical Prospecting Percussion Drilling

机译:地球物理勘探钻井中锤位与岩石互动机制研究

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Percussion drilling has been widely used in oil and gas industry, yet it still has some shortcomings, such as severe damages to drilling tools, low energy transferring efficiency and low rock-fragmenting efficiency. Thus it is necessary to reveal the mechanism of interactions between the hammer bit and rock in geophysical prospecting percussion drilling. Taking account of the coupling effect of the Weight on Bit (WOB), impact force and rotary torque, this paper constructed a Finite Element Method (FEM) model using the finite element analysis software (ANSYS/LS-DYNA) and conducted a computer simulation of bit-rock interaction under rotating and simple impact effect, which showed the rock-fragmenting process of hammer bit and the curves of volume-time and depth-time of craters as well as the effective stress-time curves of the centre tooth, second-row tooth and peripheral tooth. The results showed that: the percussion drilling process under rotating impact effect is characterized as four fundamental processes; the crater depth mainly depends on impact force rather than rotary torque; the crater created under rotating impact effect is twice the volume of that under impact effect; the effective stress of each tooth changes severely: the stress of second-row tooth is the largest, centre tooth the second, and peripheral tooth the smallest. This study provided a guide for the structural optimization of hammer bit and general applications of percussion drilling.
机译:打击乐钻井已广泛用于石油和天然气行业,但它仍然具有一些缺点,例如对钻孔工具的严重损害,低能量转移效率和低岩石碎片效率。因此,有必要揭示地球物理勘探钻井中锤头和岩石之间的相互作用机制。考虑到钻头(WOB),冲击力和旋转扭矩的重量的耦合效果,本文使用有限元分析软件(ANSYS / LS-DYNA)构建了有限元方法(FEM)模型,并进行了计算机仿真旋转下的钻头相互作用和简单的冲击效果,显示了锤头钻头的岩石分割过程和陨石坑的体积时间和深度时间的曲线以及中心齿的有效应力 - 时间曲线,第二 - 牙齿和外围牙齿。结果表明:旋转冲击效果下的打击乐钻井过程的特点是四个基本过程;火山口深度主要取决于冲击力而不是旋转扭矩;在旋转冲击效果下产生的陨石坑是影响效果下的两倍;每个牙齿的有效应力严重变化:二排齿的应力是最大的,中心齿的第二,周围齿最小。本研究提供了锤钻钻头结构优化的指导和打击乐钻探的一般应用。

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