Department of Advanced Technology Fusion, Konkuk University, Seoul, Korea.
Bioinspir Biomim. 2011 Sep;6(3):036008. doi: 10.1088/1748-3182/6/3/036008. Epub 2011 Aug 25.
We present an unsteady blade element theory (BET) model to estimate the aerodynamic forces produced by a freely flying beetle and a beetle-mimicking flapping wing system. Added mass and rotational forces are included to accommodate the unsteady force. In addition to the aerodynamic forces needed to accurately estimate the time history of the forces, the inertial forces of the wings are also calculated. All of the force components are considered based on the full three-dimensional (3D) motion of the wing. The result obtained by the present BET model is validated with the data which were presented in a reference paper. The difference between the averages of the estimated forces (lift and drag) and the measured forces in the reference is about 5.7%. The BET model is also used to estimate the force produced by a freely flying beetle and a beetle-mimicking flapping wing system. The wing kinematics used in the BET calculation of a real beetle and the flapping wing system are captured using high-speed cameras. The results show that the average estimated vertical force of the beetle is reasonably close to the weight of the beetle, and the average estimated thrust of the beetle-mimicking flapping wing system is in good agreement with the measured value. Our results show that the unsteady lift and drag coefficients measured by Dickinson et al are still useful for relatively higher Reynolds number cases, and the proposed BET can be a good way to estimate the force produced by a flapping wing system.
我们提出了一种非定常叶片元素理论(BET)模型,用于估计自由飞行甲虫和模仿甲虫扑翼系统产生的空气动力。添加了质量和旋转力以适应非定常力。除了需要准确估计力的时间历史的空气动力外,还计算了机翼的惯性力。所有力分量都基于机翼的全三维(3D)运动来考虑。本 BET 模型的结果与参考文献中给出的数据进行了验证。估计力(升力和阻力)的平均值与参考中的测量力之间的差异约为 5.7%。BET 模型还用于估计自由飞行甲虫和模仿甲虫扑翼系统产生的力。使用高速摄像机捕获 BET 计算中实际甲虫和扑翼系统的翼型运动。结果表明,甲虫的平均估计垂直力与甲虫的重量相当接近,而模仿甲虫扑翼系统的平均估计推力与测量值吻合良好。我们的结果表明,Dickinson 等人测量的非定常升力和阻力系数对于相对较高的雷诺数情况仍然有用,并且提出的 BET 可以成为估计扑翼系统产生的力的一种好方法。