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Reliability Optimum Design of NWG-type Oil-submerged Planetary Gear Reducer

机译:NWG型油浸行星齿轮减速器可靠性优化设计

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Progressing cavity pumping technology will be extensively applied for oil exploitation because of its advantages such as lower cost, higher adaptability for oil viscosity, sand-content and oil-gas ratio. This pumping system consists of motor, reducer, coupling, progressing cavity pump, variable frequency converter and protector. Among them, oil-submerged planetary gear reducer is one of the most important transmission components, which transmits torque and adjusts the rotational speed between motor and pump. Because the reducer is required to work successively under the harsh down-hole condition of high temperature and pressure for long span, the reliability design and fatigue life become the key technical problems for research. Based on reliability theory and optimum design method, the mathematical model for reliability optimization of NWG-type gear reducer is built up and optimum geometrical parameters are found in this paper. It is testified that, with such parameters, the diameter of the reducer can be reduced, daily oil-output can be increased and life span of the pumping system can be thus lengthened.
机译:渐进式腔抽技术由于具有成本低,对油粘度,砂含量和油气比的适应性强等优点,将被广泛应用于石油开采。该泵系统由电动机,减速器,联轴器,螺杆泵,变频器和保护器组成。其中,油浸式行星齿轮减速器是最重要的传动部件之一,它传递扭矩并调节电动机和泵之间的转速。由于要求减速机在高温,高压的恶劣井下条件下连续长时间工作,因此可靠性设计和疲劳寿命成为研究的关键技术问题。基于可靠性理论和优化设计方法,建立了NWG型齿轮减速器可靠性优化的数学模型,并找到了最佳几何参数。事实证明,通过这样的参数,可以减小减速器的直径,可以增加每日的出油量,从而可以延长泵系统的使用寿命。

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