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Optimization of penetration rate in rotary percussive drilling using two techniques: Taguchi analysis and response surface methodology (RMS)

机译:使用两种技术优化旋转冲击钻井的渗透率:Taguchi分析与响应面方法(RMS)

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摘要

The efficient use of drilling machines is one of the key factors that are considered in the economic evaluation of mining operations. A prediction of penetration rate is necessary to work in a cost effective way. In this work, drilling parameters such as air pressure, specific advance pressure, rotation speed, and bit diameter were taken into account to optimize the penetration rate of a rotary percussive drilling in the Hadjer Soud quarry using Taguchi and Surface Response Methodology. The experiments were carried out on the basis of a mixed experimental array Taguchi L-18 and were analyzed using signal/noise ratio (S/N), variance analysis and regression analysis. From the optimization and the experimental analyses carried out, the results show that air pressure is statistically the most dominant factor in the rotary -percussive drilling in the quarry of Hadjer Soud with a contribution of 59.90%. The Taguchi method was used to determine the optimal rational operating values a drill bit diameter of 115 mm (level 1), the specific advance pressure of 50 Kgf/cm(2) (level 2), at a rotation speed of 55 Rpm (level 3) and an air pressure of 17 Bars (level 3). A mathematical model was developed for the penetration rate to understand the effect of the control factors on the response. The predicted values are compared with the experimental data and are seen to be in good agreement. The optimal values obtained during the optimization of the study by the Taguchi method and the response surface model (RSM) were then validated by confirmatory experiments. (C) 2018 Elsevier B.V. All rights reserved.
机译:钻井机器的有效使用是在采矿业务经济评估中考虑的关键因素之一。以成本有效的方式工作是必要的渗透率的预测。在这项工作中,考虑了钻孔参数,例如空气压力,特定的提前压力,转速和比特直径,以优化使用Taguchi和表面响应方法的Hadjer Soud采石场中旋转式冲击钻井的穿透速率。实验是基于混合实验阵列Taguchi L-18进行的,并使用信号/噪声比(S / N),方差分析和回归分析进行分析。从优化和实验分析中进行,结果表明,气压在统计上是Hadjer Soud的采石场中旋转式撞击中最主要的因素,贡献为59.90%。 Taguchi方法用于确定钻头直径为115mm(1)的最佳合理操作值,50kgf / cm(2)(2)(2)处的特定预付压力为55 rpm(水平3)和17巴的气压(3级)。为渗透率开发了一个数学模型,了解控制因素对响应的影响。预测值与实验数据进行比较,并且被视为良好的一致性。然后通过验证实验验证在通过TAGUCHI方法和响应表面模型(RSM)进行研究期间获得的最佳值。 (c)2018 Elsevier B.v.保留所有权利。

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