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Numerical study of hydrofoil surface jet flow on cavitation suppression

Numerical study of hydrofoil surface jet flow on cavitation suppression

作     者:WANG Wei LU Shengpeng XU Ruiduo YI Qi WANG Yayun WANG Xiaofang WANG Wei;LU Shengpeng;XU Ruiduo;YI Qi;WANG Yayun;WANG Xiaofang

作者机构:Key Laboratory of Ocean Energy Utilization and Energy Conservation of Ministry of EducationDalian University of Technology 

出 版 物:《排灌机械工程学报》 (Journal of Drainage and Irrigation Machinery Engineering)

年 卷 期:2017年第35卷第10期

页      面:829-834页

学科分类:082802[工学-农业水土工程] 08[工学] 0828[工学-农业工程] 09[农学] 0815[工学-水利工程] 0903[农学-农业资源与环境] 

基  金:supported by the National Key Basic Research Special Foundation of China (2015CB057301) 

主  题:hydrofoil cavitation suppression jet flow lift-to-drag ratio 

摘      要:Cavitation caused vibration and noise of hydraulic machinery. To some extent,cavitation made fatigue damage in advance. Many scholars found that the re-entrant jets were the reasons of the shedding of cavities. To suppress cavitation,based on the idea of blocking the re-entrant jets,a special surface flow structure of 2D hydrofoil was proposed. The through-hole was made in the proper position of the hydrofoil. The incoming flow can outflow from this jet-hole automatically depending on the pressure difference between pressure side and suction side. Re-entrant jet growth can be weakened by optimizing the jet-hole geometry. Based on the standard k-ε turbulence model and Schnerr & Sauer cavitation model,under different cavitation numbers( σ) and jet-angles( β) for NACA0066( 2D) hydrofoil with 8° angles of attack,cavitation field numerical analysis was carried out. The results show that 2D hydrofoil cavitation flow had a strong unsteadiness. Making a jet-hole at the junction between the re-entrant jet and cavity can effectively minimize cloud cavitation. For a certain cavitation condition,optimal jet-angles( β) can be obtained to control cavitation growth. For the same β,the effects of cavitation suppression were changed with different cavitation numbers( σ). Consequently,suitable jet-angle and jet-position could extend the stable operating range of the hydrofoil.

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