首页> 外文期刊>Fresenius environmental bulletin >EXPERIMENTAL STUDYOF THE HYDRAULIC SYSTEM OF THE STATIC OFFSET PUSH-BIT ROTARY STEERABLE DRILLING TOOL FOR ENERGY SAVING REQUIREMENTS
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EXPERIMENTAL STUDYOF THE HYDRAULIC SYSTEM OF THE STATIC OFFSET PUSH-BIT ROTARY STEERABLE DRILLING TOOL FOR ENERGY SAVING REQUIREMENTS

机译:节能要求静态偏移推动钻头旋转可转向钻孔工具液压系统的实验研究

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In this paper,an experimental device is set up for the hydraulic system of the static offset push-bit rotary steerable drilling tool,and a preferred scheme for the hydraulic system of the static offset push-bit rotary steerable drilling tool is proposed by the experimental method.The bypass throttling speed control circuit has been tested at different temperatures and different throttle groups.Based on the lab test,it is found that the pressure control system,including the bypass speed control circuit and the brushless DC motor,has good rigidity The results shows that the rigidity of the system increases with the fluid resistance,and the displacement and working pressure is closer to linear; the power consumption is less mainly depends on the relationship between the working pressure and the temperature of the hydraulic oil.Hydraulic system wants to obtain the good rigidity at high temperature,the requirements for motors and hydraulic pumps performance are higher. The control of hydraulic systems can be achieved by precise efficient control of DC motors,and its characteristics are more suitable for the control characteristics of hydraulic execution systems of rotary drilling tools,which need to save energy as much as possible.This system could effectively improve the ROP,and has important environmental protection significance.
机译:在本文中,一个实验装置被设置为静态偏移推位旋转可控钻具的液压系统,和偏移静态的液压系统的优选方案推位旋转可控钻具提出了通过实验method.The旁路节流速度控制电路具有在不同的温度和不同的油门groups.Based在实验室试验进行了测试,发现的是,压力控制系统,包括旁路速度控制电路和无电刷DC电机,具有良好的刚性的结果表明,与所述流体阻力系统的刚度增加,并且位移和工作压力是接近线性的;功耗少主要取决于工作压力和液压oil.Hydraulic系统的温度之间的关系要在高温下,以获得良好的刚性,对马达和液压泵的性能的要求也更高。液压系统的控制可以通过直流电动机的精确有效的控制来实现的,其特征是更适合的旋转钻井工具液压执行系统,这就需要能量节省多达possible.This系统能有效改善的控制特性在ROP,具有重要的环保意义。

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