流固耦合
拍打
气动弹性
Lift(数据挖掘)
空气动力
刚度
空气动力学
机械
降低频率
物理
结构工程
工程类
有限元法
计算机科学
翼
雷诺数
数据挖掘
湍流
作者
Long Chen,Luyao Wang,Yan Qing Wang
出处
期刊:AIAA Journal
[American Institute of Aeronautics and Astronautics]
日期:2022-12-01
卷期号:60 (12): 6665-6679
被引量:2
摘要
Wing flexibility is critical to flapping rotary wings (FRWs), and in that the deformation is bilaterally coupled with aerodynamic forces and thus determines the performance. Conventional solutions to this fluid–structure interaction (FSI) topic require considerable computational resources. In this paper, an efficient FSI model is proposed to calculate the aerodynamic force and passive twisting of FRWs. The passive pitching is regulated by a torsional spring, and the twisting is simplified as a quadratic distribution. A well-verified quasi-steady model is employed to estimate the aerodynamic forces. Our results show that the performance of rigid FRWs is superior to twistable FRWs within an upper limit of the wing-root stiffness [Formula: see text], which is around [Formula: see text]. At higher [Formula: see text] values, the twistable FRWs generate comparable lift to rigid FRWs at a higher efficiency. An increase in flapping frequency can remarkably reduce the efficiency of twistable FRWs despite the lift enhancement, while a concomitant reduction of flapping amplitude can moderate the loss of efficiency at higher flapping frequencies. Our model provides an efficient tool for the quick estimation of the aeroelastic performance of twistable FRWs and can thus contribute to the wing stiffness design.
科研通智能强力驱动
Strongly Powered by AbleSci AI