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Numerical Investigation on Pressure Pulsation Characteristics and Radial Force of a Deep-Sea Electric Lifting Pump at Off-Design Conditions

机译:深度电动提升泵在非设计条件下压力脉动特性和径向力的数值研究

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摘要

To predict the vibrational conditions, the generation mechanism, and action law of pressure pulsation and radial force, a computational fluid dynamics (CFD) study of a deep-sea electric lifting pump operating under different off-design conditions was performed. The time-domain and frequency-domain response of the pressure pulsation at different monitoring points and the radial force of impeller distribution were obtained. Differences in pressure pulsation characteristics between the first stage and second stage were observed. The variation law and influential factors of the radial force under different flow rates were discussed. The present investigation shows that the flow field caused by rotor-stator interaction is not uniform, resulting in uneven pressure distribution and pressure pulsation, the combined effects of which produce fluctuating radial forces. Parameters obtained via simulations including head, efficiency, and power, which can reflect the hydraulic performance of the pump, agree well with experimental results; thus, the accuracy of the simulation model and the calculation method was verified. This study provides a basis for improving the structure and reliability of an electric lifting pump.
机译:为了预测振动条件,压力脉动和径向力的产生机制和行动定律,在不同的偏离设计条件下操作的深海电动提升泵的计算流体动力学(CFD)研究。得到了不同监测点处的压力脉动的时域和频域响应和叶轮分布的径向力。观察到第一阶段和第二阶段之间的压力脉动特性的差异。讨论了不同流速下径向力的变异法和影响因素。本研究表明,由转子 - 定子相互作用引起的流场不均匀,导致压力分布和压力脉动不均匀,其组合效果产生波动的径向力。通过模拟获得的参数,包括头部,效率和功率,可以反映泵的液压性能,与实验结果很好;因此,验证了仿真模型的准确性和计算方法。本研究为提高电动提升泵的结构和可靠性提供了基础。

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