首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E. Journal of Process Mechanical Engineering >Energy saving analysis of the hydrostatic drives used in the rotary head system of the blast hole drill rig
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Energy saving analysis of the hydrostatic drives used in the rotary head system of the blast hole drill rig

机译:喷砂钻机旋转头系统中使用的静压驱动的节能分析

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摘要

Blast hole drill rigs are used for drilling the soft and the medium-hard rocks in open-pit mines. In such rigs, the drill bit is rotated by a hydrostatic drive. In this respect, two different type hydrostatic drives have been considered. In the first drive, the rotation of the drill bit takes place by a variable displacement pump and two low-torque high-speed hydro-motors along with a step-down gear unit (i.e. LTHS drive), whereas in the second drive an identical pump and a high-torque low-speed hydro-motor (i.e. HTLS drive) rotate the drill bit. In this study, the energy saving analysis of the above mentioned hydrostatic drives has been performed with respect to the load profile of the blast hole drilling. In this respect, the modelling, simulation and the experimentation of the drives have been carried out. Simulations have been performed in MATLAB-Simulink environment and it has been verified through experiments. The proportional-integral-derivative control algorithm has been used to control the drives speed in various loading stages. Results show that the high-torque low-speed drive save more energy compares to the low-torque high-speed drive for the usual operating range of the blast hole drilling.
机译:喷孔钻头用于钻孔钻孔钻孔和中硬岩。在这种钻机中,钻头通过静水压驱动器旋转。在这方面,已经考虑了两种不同的静水压驱动器。在第一驱动器中,钻头的旋转通过可变排量泵和两个低扭矩高速水电机以及降压齿轮单元(即LTHS驱动器)进行,而在第二驱动器中相同泵和高扭矩低速水电机(即HTLS驱动器)旋转钻头。在该研究中,已经对爆破孔钻孔的负载曲线进行了上述静水压驱动器的节能分析。在这方面,已经进行了建模,仿真和驱动器的实验。已经在Matlab-Simulink环境中进行了模拟,并通过实验进行了验证。比例积分衍生物控制算法已用于控制各种装载阶段的驱动速度。结果表明,高扭矩低速驱动器保存更多的能量与爆破钻孔常用范围的低扭矩高速驱动器比较。

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