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Rotor profile design and numerical analysis of 2–3 type multiphase twin-screw pumps

机译:2-3型多相双螺杆泵的转子外形设计和数值分析

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摘要

Increasing demands for high-performance handling of fluids in oil and gas as well as other applications require improvements of efficiency and reliability of screw pumps. Rotor profile plays the key role in the performance of such machines. This paper analyses difference in performance of 2–3 lobe combination of twin-screw pumps with different rotor profiles. A-type profile formed of involute–cycloid curves and D-type formed of cycloid curves are typical representatives for 2–3 type screw pumps. The investigation is performed by use of a full 3-D computational fluid dynamics analysis based on a single-domain structured moving mesh obtained by novel grid generation procedure. The real-time mass flow rate, rotor torque, pressure distribution and velocity field were obtained from 3D computational fluid dynamics calculations. The performance curves were produced for variable rotation speeds and variable discharge pressures. The computational fluid dynamics model was validated by comparing the simulation results of the A-type pump with the experimental data. In order to get the performance characteristics of D-type profile, two rotors with D-type profile were designed. The first has the same displacement volume as A-type while the second has the same lead and rotor length as A-type but different displacement volume. The comparison of results obtained with two rotor profiles gave an insight on the advantages and disadvantages of each of them.
机译:对高性能处理石油和天然气中的流体以及其他应用的需求不断增长,这就要求提高螺杆泵的效率和可靠性。转子轮廓在此类机器的性能中起关键作用。本文分析了具有不同转子轮廓的双螺杆泵的2–3凸角组合的性能差异。由渐开线-摆线曲线形成的A型轮廓和由摆线曲线形成的D型轮廓是2-3型螺杆泵的典型代表。该研究是通过使用基于新颖的网格生成程序获得的单域结构化移动网格的完整3-D计算流体动力学分析来执行的。实时质量流量,转子转矩,压力分布和速度场是从3D计算流体动力学计算获得的。产生了针对可变转速和可变排放压力的性能曲线。通过比较A型泵的模拟结果和实验数据来验证计算流体动力学模型。为了获得D型轮廓的性能特征,设计了两个具有D型轮廓的转子。第一个具有与A型相同的排量,而第二个具有与A型相同的导程和转子长度,但具有不同的排量。通过比较两个转子轮廓得到的结果,可以洞察每种转子的优缺点。

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