EFFECT OF HYDROFOIL PLANFORM ON TIP VORTEX ROLL-UP AND CAVITATION

被引:27
|
作者
FRUMAN, DH
CERRUTTI, P
PICHON, T
DUPONT, P
机构
[1] ECOLE NAVALE, HYDRODYNAM LAB, F-29240 BREST, FRANCE
[2] ECOLE POLYTECH FED LAUSANNE, INST MACHINES HYDRAUL & MECAN FLUIDES, CH-1007 LAUSANNE, SWITZERLAND
来源
JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME | 1995年 / 117卷 / 01期
关键词
D O I
10.1115/1.2816806
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The effect of the planform of hydrofoils on tip vortex roll-up and cavitation has been investigated by testing three foils having the same NACA 16020 cross section but different shapes. One foil has an elliptical shape while the other two are shaped like quarters of ellipses; one with a straight leading edge and the other with a straight trailing edge. Experiments were conducted in the ENSTA, Ecole Navale and IMHEF cavitation tunnels,with homologous foils of different sizes to investigate Reynolds number effects. Hydrodynamic forces as well as cavitation inception and desinence performance were measured as a function of Reynolds number and foil incidence angle. Laser Doppler measurements of the tangential and axial velocity profiles in the region immediately downstream of the tip were also performed. At equal incidence angle and Reynolds number, the three foils show different critical cavitation conditions and the maximum tangential velocity near the tip increases as the hydrofoil rip is moved from a forward to a rear position. However, the velocity profiles become more similar with increasing downstream distance, and at downstream distances greater than one chord aft of the tip, the differences between the foils disappear. The rate of tip vortex roll-lcp is much faster for the straight leading edge than for the straight trailing edge foil and, in the latter case, a significant portion of the roll-up occurs along the foil curved leading edge. The minimum of the pressure coefficient on the axis of the vortex was estimated from the velocity measurements and correlated with the desinent cavitation number for the largest free stream velocities. The correlation of data is very satisfactory. Ar the highest Reynolds number tested and at equal lift coefficients, the straight leading edge foil displays the most favorable cavitation desinent numbers.
引用
收藏
页码:162 / 169
页数:8
相关论文
共 50 条
  • [1] Modal analysis of tip vortex cavitation with an insight on how vortex roll-up enhances its instability
    Wang, Xincheng
    Bai, Xiaorui
    Qian, Zhaohui
    Cheng, Huaiyu
    Ji, Bin
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2022, 157
  • [2] Roll-up region of tip vortex: numerical investigation
    Reclari, M.
    Sano, T.
    Iino, M.
    Dreyer, M.
    Amini, A.
    Farhat, M.
    29TH IAHR SYMPOSIUM ON HYDRAULIC MACHINERY AND SYSTEMS, 2019, 240
  • [3] Measurements in the tip vortex roll-up region of an oscillating wing
    Chang, JW
    Park, SO
    AIAA JOURNAL, 2000, 38 (06) : 1092 - 1095
  • [4] Tip vortex cavitation on an oscillating hydrofoil
    Fruman, DH
    JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 1997, 119 (04): : 742 - 743
  • [5] A MODIFIED POINT VORTEX MODEL FOR DESCRIBING THE ROLL-UP OF TIP VORTICES
    SCHERER, T
    STAUFENBIEL, R
    ZEITSCHRIFT FUR FLUGWISSENSCHAFTEN UND WELTRAUMFORSCHUNG, 1990, 14 (06): : 353 - 360
  • [6] Vortex sheet roll-up revisited
    DeVoria, A. C.
    Mohseni, K.
    JOURNAL OF FLUID MECHANICS, 2018, 855 : 299 - 321
  • [7] A model for tip vortex roll-up in the near field region of three-dimensional foils and the prediction of cavitation onset
    Astolfi, JA
    Fruman, DH
    Billard, JY
    EUROPEAN JOURNAL OF MECHANICS B-FLUIDS, 1999, 18 (04) : 757 - 775
  • [8] Design of Rotary Wings with Passive Mitigation of Coherent Tip Vortex Roll-Up
    Yu, Daniel
    Ansell, Phillip
    JOURNAL OF AIRCRAFT, 2023, 60 (02): : 533 - 545
  • [9] The effect of streamwise vortex structures on the particle distribution in the roll-up
    Zheng, YQ
    Fan, JR
    JOURNAL OF VISUALIZATION, 2005, 8 (03) : 198 - 198
  • [10] The effect of streamwise vortex structures on the particle distribution in the roll-up
    Youqu Zheng
    Jianren Fan
    Journal of Visualization, 2005, 8 : 198 - 198