考虑能量传递效率的水翼空蚀数值预测分析
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国家自然科学基金青年科学基金项目(52409115)、江苏省青年科学基金项目(BK20220538)和喷水推进技术重点实验室开放基金项目(JCKY2024206D002)


Numerical Prediction Analysis of Cavitation Erosion of Hydrofoils Considering Energy Transfer Efficiency
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    摘要:

    准确表征易空蚀区域是水力机械设计及提高其工作寿命的有效措施,也是空蚀数值预测的关键难点。采用基于密度修正的SST k-ω湍流模型及Sauer空化模型对NACA0009三维扭曲水翼进行非定常空化数值计算,通过对比空穴脱落频率及实验中空穴瞬态特征验证了当前空化模拟的准确性。并考虑能量传递效率构建了空蚀能量从流场空间辐射至壁面的能量传播关系,从而预测出壁面空蚀载荷。通过对比不同瞬时时刻的壁面空蚀能量及空蚀载荷发现:由于空蚀载荷综合考虑了全流场空间中空蚀能量对于壁面的侵蚀影响,预测出了更大范围的空蚀强度覆盖区域;时均12个周期内每个瞬时时间步所产生的壁面空蚀强度,进而得到了壁面时均空蚀强度分布,并将空蚀能量与空蚀载荷得到的壁面时均空蚀强度与空蚀实验结果对比发现,基于能量传递效率预测得到的时均空蚀载荷覆盖区域与实验结果更加吻合,确定了能量传递效率在空蚀数值预测中的必要性。

    Abstract:

    Accurately predicting the erosion regions is always a challenging point of numerical cavitation erosion simulation, which is beneficial for designing and extending the lifespan of the hydraulic machinery. The density-corrected SST k-ω turbulence model and the Sauer cavitation model were used to simulate the unsteady cavitation around NACA0009 3D twisted hydrofoil. The accuracy of the current numerical method was verified by comparing the cavitation shedding frequency and transient cavity behaviors in the experiment. Considering the energy transfer efficiency, a propagation relationship of cavitation energy from the flow field space radiation to the wall was constructed, thereby predicting the wall erosion load. By comparing the erosion energy and erosion load on the hydrofoil surface at different instants, it was found that compared with cavitation energy, the erosion load, which comprehensively considered the influence of erosion energy from the whole flow field on hydrofoil surface, predicted a wider coverage erosion area. Moreover, the average wall surface erosion intensity distribution was obtained. By time-averaging the wall surface erosion intensity solved from each instantaneous time step within 12 cycles, and by comparing the average wall surface erosion intensity obtained from the erosion energy and erosion load with the experimental erosion results, it was demonstrated that the erosion area predicted by time-averaged erosion load was more agreeable to the experiment result, indicating that it was necessary to consider the energy transfer efficiency when predicting cavitation erosion.

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耿琳琳,方海渊,曹彦涛,郑恩慧,李宁.考虑能量传递效率的水翼空蚀数值预测分析[J].农业机械学报,2025,56(5):361-369. GENG Linlin, FANG Haiyuan, CAO Yantao, ZHENG Enhui, LI Ning. Numerical Prediction Analysis of Cavitation Erosion of Hydrofoils Considering Energy Transfer Efficiency[J]. Transactions of the Chinese Society for Agricultural Machinery,2025,56(5):361-369.

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  • 收稿日期:2024-03-08
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  • 在线发布日期: 2025-05-10
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