TY - JOUR
T1 - Fluid forces on a very low Reynolds number airfoil and their prediction
AU - Zhou, Y.
AU - Alam, Md Mahbub
AU - Yang, H. X.
AU - Guo, H.
AU - Wood, D. H.
PY - 2011/2
Y1 - 2011/2
N2 - This paper presents the measurements of mean and fluctuating forces on an NACA0012 airfoil over a large range of angle (α) of attack (0-90°) and low to small chord Reynolds numbers (Rec), 5.3×103-5.1×104, which is of both fundamental and practical importance. The forces, measured using a load cell, display good agreement with the estimate from the LDA-measured cross-flow distributions of velocities in the wake based on the momentum conservation. The dependence of the forces on both α and Rec is determined and discussed in detail. It has been found that the stall of an airfoil, characterized by a drop in the lift force and a jump in the drag force, occurs at Rec≥1.05×104 but is absent at Rec=5.3×103. A theoretical analysis is developed to predict and explain the observed dependence of the mean lift and drag on α.
AB - This paper presents the measurements of mean and fluctuating forces on an NACA0012 airfoil over a large range of angle (α) of attack (0-90°) and low to small chord Reynolds numbers (Rec), 5.3×103-5.1×104, which is of both fundamental and practical importance. The forces, measured using a load cell, display good agreement with the estimate from the LDA-measured cross-flow distributions of velocities in the wake based on the momentum conservation. The dependence of the forces on both α and Rec is determined and discussed in detail. It has been found that the stall of an airfoil, characterized by a drop in the lift force and a jump in the drag force, occurs at Rec≥1.05×104 but is absent at Rec=5.3×103. A theoretical analysis is developed to predict and explain the observed dependence of the mean lift and drag on α.
KW - Aerodynamics of airfoil
KW - Low Reynolds number airfoil
KW - Reynolds number effect
KW - Stall of airfoil
UR - https://www.scopus.com/pages/publications/78751579045
U2 - 10.1016/j.ijheatfluidflow.2010.07.008
DO - 10.1016/j.ijheatfluidflow.2010.07.008
M3 - 文章
AN - SCOPUS:78751579045
SN - 0142-727X
VL - 32
SP - 329
EP - 339
JO - International Journal of Heat and Fluid Flow
JF - International Journal of Heat and Fluid Flow
IS - 1
ER -