TY - GEN
T1 - A detailed aerodynamic analysis of the cyclorotor using dynamic mesh in CFD
AU - Tang, Jiwei
AU - Hu, Yu
AU - Song, Bifeng
N1 - Publisher Copyright:
© 2014, American Institute of Aeronautics and Astronautics Inc. All rights reserved.
PY - 2014
Y1 - 2014
N2 - A numerical study with dynamic mesh technique has been conducted on a cyclorotor operating at Reynolds numbers about 20,000~90,000. The varying total thrust of cyclorotor , the force on blade during revolution and the aerodynamic characteristics of the unsteady flow field around cyclorotor and blade airfoil are investigated in detail. The instantaneous thrust, which are cyclically fluctuating with azimuth as an approximated sinusoidal curve, is found to have close relationship with the corresponding azimuth-varying resultant pitch angle of all blades; the average direction of thrust during revolution is found to remain almost constant as rotating speed change, which is very important for a cyclogiro's stability control; the curves of varying normal force and tangent force coefficients of a blade airfoil with pitch angle are clearly shown to be hysteresis loops both in one-and four-bladed cyclorotor, which indicate the strong unsteady aerodynamics of cyclorotor. The flow field around the blade airfoil of one-bladed cyclorotor and four-bladed cyclorotor are given to show the complex flow field with unsteady interactions between the blades and the wakes of other blades.
AB - A numerical study with dynamic mesh technique has been conducted on a cyclorotor operating at Reynolds numbers about 20,000~90,000. The varying total thrust of cyclorotor , the force on blade during revolution and the aerodynamic characteristics of the unsteady flow field around cyclorotor and blade airfoil are investigated in detail. The instantaneous thrust, which are cyclically fluctuating with azimuth as an approximated sinusoidal curve, is found to have close relationship with the corresponding azimuth-varying resultant pitch angle of all blades; the average direction of thrust during revolution is found to remain almost constant as rotating speed change, which is very important for a cyclogiro's stability control; the curves of varying normal force and tangent force coefficients of a blade airfoil with pitch angle are clearly shown to be hysteresis loops both in one-and four-bladed cyclorotor, which indicate the strong unsteady aerodynamics of cyclorotor. The flow field around the blade airfoil of one-bladed cyclorotor and four-bladed cyclorotor are given to show the complex flow field with unsteady interactions between the blades and the wakes of other blades.
UR - http://www.scopus.com/inward/record.url?scp=84938332694&partnerID=8YFLogxK
M3 - 会议稿件
AN - SCOPUS:84938332694
T3 - 52nd Aerospace Sciences Meeting
BT - 52nd Aerospace Sciences Meeting
PB - American Institute of Aeronautics and Astronautics Inc.
T2 - 52nd Aerospace Sciences Meeting 2014
Y2 - 13 January 2014 through 17 January 2014
ER -