主轴泵模拟方法比较分析

Fluids Pub Date : 2024-02-09 DOI:10.3390/fluids9020044
Pasquale Borriello, E. Frosina, Pierpaolo Lucchesi, A. Senatore
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摘要

本研究对主轴泵的模拟方法进行了全面的比较分析,重点关注稳态 CFD、瞬态 CFD 和叠加参数方法。主轴泵以可靠性、高效率和低噪音著称,在电池电动汽车的热管理中发挥着关键作用,符合汽车行业减少污染物和二氧化碳排放的承诺。这项研究的动力来自于减少道路运行能耗的迫切需要,尤其是在汽车行业努力提高能效的情况下。虽然此类应用通常采用离心泵,但离心泵的效率在很大程度上取决于转速,因此在实际应用中,尽管离心泵的设计效率很高,但仍会造成能源浪费。因此,为满足不断发展的行业需求,采用精确设计的主轴泵热管理系统成为一种可行的解决方案。认识到仿真工具对泵制造商设计和优化阶段的深远影响,本研究强调了快速准确仿真工具的重要性。瞬态-CFD 是一种功能强大的工具,可对各种性能指标进行实时监控,而稳定-CFD 则以最小的简化程度巧妙地捕捉了压力分布和机器泄漏。集合参数方法虽然在仿真设置和简化输入几何形状方面需要付出努力,但却能提供快速的计算时间和全面的预测,包括泄漏、扭矩、气蚀和压力波纹。本文开创性地在文献中首次提出了使用上述方法对同一参考机器进行精确模拟的模型。模拟结果与各种泵速和压降的实验进行了严格验证。讨论涵盖了预测流量、扭矩、气蚀和压力波纹,为了解每种方法的优势和局限性提供了宝贵的见解。
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Comparative Analysis of Simulation Methodologies for Spindle Pumps
This research conducts a comprehensive comparative analysis of simulation methodologies for spindle pumps, with a specific focus on steady-state CFD, transient-CFD, and lumped-parameter approaches. Spindle pumps, renowned for their reliability, efficiency, and low noise emission, play a pivotal role in Thermal Management for Battery Electric Vehicles, aligning with the automotive industry’s commitment to reducing pollutants and CO2 emissions. The study is motivated by the critical need to curtail energy consumption during on-the-road operations, particularly as the automotive industry strives for enhanced efficiency. While centrifugal pumps are commonly employed for such applications, their efficiency is highly contingent on rotational speed, leading to energy wastage in real-world scenarios despite high efficiency at the design point. Consequently, the adoption of precisely designed spindle pumps for thermal management systems emerges as a viable solution to meet evolving industry needs. Recognizing the profound impact of simulation tools on the design and optimization phases for pump manufacturers, this research emphasizes the significance of fast and accurate simulation tools. Transient-CFD emerges as a powerful Tool, enabling real-time monitoring of various performance indicators, while steady-CFD, with minimal simplifications, adeptly captures pressure distribution and machine leakages. Lumped-parameter approaches, though requiring effort in simulation setup and simplifying input geometry, offer rapid computational times and comprehensive predictions, including leakages, Torque, cavitation, and pressure ripple. Breaking new ground, this paper presents, for the first time in the literature, accurate simulation models for the same reference machine using the aforementioned methodologies. The results were rigorously validated against experiments spanning a wide range of pump speeds and pressure drops. The discussion encompasses predicted flow, Torque, cavitation, and pressure ripple, offering valuable insights into the strengths and limitations of each methodology.
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