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二维弹性扑翼沉浮运动流动特性的数值研究
引用本文:钱靖,张正科,罗时钧,刘锋. 二维弹性扑翼沉浮运动流动特性的数值研究[J]. 空气动力学学报, 2012, 30(1): 113-119
作者姓名:钱靖  张正科  罗时钧  刘锋
作者单位:1. 翼型叶栅空气动力学国防科技重点实验室,西北工业大学,陕西西安710072
2. 加利福尼亚大学尔文分校机械与航空航天工程系,尔文,加利福尼亚,CA 92697-3975,美国
摘    要:采用非定常势流板块法和Euler-Bernoul1i梁振动微分方程,对后缘带弹性薄板的翼型在作沉浮运动时翼型绕流和薄板弹性振动之间的流-固耦合过程进行数值模拟,并计算流动特性、非定常气动载荷,尤其是沉浮运动的推力效应.用有限差分法求解薄板的弹性变形运动,气动弹性分析采用弱耦合迭代方式.通过对翼型非定常气动力(升力和推力)、推进效率、尾迹脱落涡计算结果的分析发现,通过调整弹性薄板的刚度,可以使得翼型产生最佳的非定常推力.

关 键 词:数值模拟  势流板块法  弹性变形  流固耦合  弱耦合迭代法

Numerical study of flow characteristics of a plunging rigid airfoil with elastic trailing-edge plate
QIAN Jing , ZHANG Zheng-ke , LUO Shi-jun , LIU Feng. Numerical study of flow characteristics of a plunging rigid airfoil with elastic trailing-edge plate[J]. Acta Aerodynamica Sinica, 2012, 30(1): 113-119
Authors:QIAN Jing    ZHANG Zheng-ke    LUO Shi-jun    LIU Feng
Affiliation:1.National Key Laboratory of Science and Technology on Aerodynamic Design and Research, Northwestern Polytechnical University,Xi’an,710072,China; 2.Department of Mechanical and Aerospace Engineering,University of California,Irvine,Irvine,CA 92697-3975,California,U.S.A.)
Abstract:The fluid-structure coupling process of a plunging rigid airfoil with a thin elastic plate attached at the trailing-edge is simulated numerically by using unsteady potential flow source/vortex panel method and the Euler-Bernoulli beam vibration differential equation.The flow characteristics,the unsteady aerodynamic loads,especially the thrust effects of the plunging motion are computed.The beam vibration differential equation for the elastic deformation motion of the attached trailing-edge plate is solved by finite difference method and the simulation of fluid-structure interaction process is conducted by a loose coupling iterative method.The analysis of the computed unsteady aerodynamic forces(e.g.,lift and thrust),the propulsion efficiency and the shed vortices in the wake reveals that a proper elasticity of the thin elastic plate attached will lead to an optimum thrust for the airfoil.
Keywords:numerical simulation  the potential flow panel method  elastic deformation  fluid-solid coupling  loose coupling method
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