Nguyen Anh Tuan, Han Jong-Seob, Han Jae-Hung
Department of Aerospace Engineering, KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon, Korea.
Bioinspir Biomim. 2016 Dec 14;12(1):016007. doi: 10.1088/1748-3190/12/1/016007.
This study explores the effects of the body aerodynamics on the dynamic flight stability of an insect at various different forward flight speeds. The insect model, whose morphological parameters are based on measurement data from the hawkmoth Manduca sexta, is treated as an open-loop six-degree-of-freedom dynamic system. The aerodynamic forces and moments acting on the insect are computed by an aerodynamic model that combines the unsteady panel method and the extended unsteady vortex-lattice method. The aerodynamic model is then coupled to a multi-body dynamic code to solve the system of motion equations. First, the trimmed flight conditions of insect models with and without consideration of the body aerodynamics are obtained using a trim search algorithm. Subsequently, the effects of the body aerodynamics on the dynamic flight stability are analysed through modal structures, i.e., eigenvalues and eigenvectors in this case, which are based on linearized equations of motion. The solutions from the nonlinear and linearized equations of motion due to gust disturbances are obtained, and the effects of the body aerodynamics are also investigated through these solutions. The results showed the important effect of the body aerodynamics at high-speed forward flight (in this paper at 4.0 and 5.0 m s) and the movement trends of eigenvalues when the body aerodynamics is included.
本研究探讨了在不同的前飞速度下,昆虫身体空气动力学对其动态飞行稳定性的影响。该昆虫模型的形态学参数基于对烟草天蛾Manduca sexta的测量数据,被视为一个开环六自由度动态系统。作用在昆虫上的气动力和气动力矩通过一个结合了非定常面元法和扩展非定常涡格法的空气动力学模型来计算。然后将该空气动力学模型与一个多体动力学代码耦合,以求解运动方程组。首先,使用配平搜索算法获得考虑和不考虑身体空气动力学的昆虫模型的配平飞行条件。随后,通过模态结构,即基于线性化运动方程的特征值和特征向量,分析身体空气动力学对动态飞行稳定性的影响。获得了由于阵风扰动引起的非线性和线性化运动方程的解,并通过这些解研究了身体空气动力学的影响。结果表明,在高速前飞(本文中为4.0和5.0 m/s)时,身体空气动力学具有重要影响,并且当考虑身体空气动力学时特征值的变化趋势。