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Numerical study of the influence of hydrostatic and confining pressure on percussive drilling of hard rock

机译:静水压力和围压对硬岩冲击钻进影响的数值研究

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This paper presents a numerical investigation on the effect of hydrostatic pressure (lithostatic stress) and confining pressure (horizontal tectonic stress) on percussive drilling of hard rocks. A finite element based modeling approach was employed in the simulation of the dynamic bit-rock interaction process. The rock fracture in this approach is modeled with a damage-viscoplasticity model accounting for the main fracture types in the bit-rock interaction as well as the strain-rate effects. The model was calibrated for Kuru grey granite in the unconfined case. In the simulations of single impact with a multiple-button bit both hydrostatic and confining pressures were applied at different levels up to. 100 MPa and the results were compared to the case with no pressure. The simulations show that at this pressure level the volume of the failed elements was 38% in case of hydrostatic pressure and 56% in case of confining pressure of the volume in the pressure free case. The same figures apply to corresponding rates of penetration. The cause of this reduction in the material removal or the rate of penetration is the compressive stress state, of either pressure type tested, which effectively suppresses tensile and shear fractures. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文对静水压力(静压应力)和围压(水平构造应力)对硬岩冲击钻的影响进行了数值研究。在动态钻头-岩石相互作用过程的仿真中采用了基于有限元的建模方法。这种方法中的岩石裂缝是用损伤粘塑性模型建模的,该模型考虑了钻头-岩石相互作用中的主要裂缝类型以及应变率效应。在无限制的情况下,该模型针对Kuru灰色花岗岩进行了校准。在模拟具有多按钮钻头的单次冲击时,静液压和围压均以不同的水平施加。 100 MPa,并将结果与​​无压力的情况进行比较。模拟显示,在此压力水平下,在静水压力下,失效元件的体积为38%,在无压力的情况下,在受限压力下,失效元件的体积为56%。相同的数字适用于相应的渗透率。这种材料去除率或渗透率降低的原因是所测试的任一压力类型的压应力状态,该压应力状态有效地抑制了拉伸断裂和剪切断裂。 (C)2016 Elsevier Ltd.保留所有权利。

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