瞬态空化管道流动离散多空腔模型的准二维摩擦模型参数化分析

Q. Sun, Y. Hao, Pei-Yuan Cheng
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引用次数: 0

摘要

离散多空腔模型与准二维摩擦模型耦合是模拟瞬态空化管道流动的有效方法。这类模型的仿真精度取决于对模型关键参数的理解,而这一点至今仍是难以捉摸的。为了解决这一开放性问题,本文采用离散汽腔模型(DVCM)和离散气腔模型(DGCM),结合准二维摩擦模型,重点揭示了这些模型对网格数和权重参数等关键参数的敏感性。在定量分析和压力波动历史的基础上,提出了一种评价数值结果准确性的方法。结果表明:准二维摩擦模型的加入提高了空腔形成和崩塌时间的预测精度;但是,这并不影响网格号的选择。同时,除低强度空化情况外,数值结果对准二维摩擦模型中粘滞项的权重参数较为敏感,建议其值为1。从实际应用的角度看,这有助于理解离散多空腔模型的特点,提高瞬态空化管道流动的模拟精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parametric analysis of discrete multiple-cavity models with the quasi-two-dimensional friction model for transient cavitating pipe flows
Discrete multiple-cavity models coupled with quasi-two-dimensional (quasi-2D) friction models are effective solutions to simulating transient cavitation pipe flows. The simulation accuracy of such models hinges upon the understanding of key parameters of the models, which remains elusive so far. To address such an open issue, this paper employs the discrete vapor cavity model (DVCM) and the discrete gas cavity model (DGCM), combined with the quasi-2D friction model, with a particular focus on revealing the sensitivity of these models to the key parameters such as grid number and weighting parameters. Based on the quantitative analysis and pressure fluctuation history, a method is developed to evaluate the accuracy of numerical results. Results show that the inclusion of the quasi-2D friction model improves the accuracy of predicting time of cavity formation and collapse; however, it does not affect the selection of grid number. Meanwhile, numerical results are sensitive to the weighting parameter of the viscous term in the quasi-2D friction model except for the case of low-intensity cavitation and its value of 1 is suggested for all cases. From the practical point of view, our finding is helpful to understand the feature of discrete multiple-cavity models and improve the simulating accuracy of transient cavitation pipe flows.
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