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CFD Based Determination of Dynamic Stability Derivatives in Yaw for a Bird

机译:基于CFD的鸟类偏航角动态稳定性导数的确定

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Dynamic yaw stability derivatives of a gull bird are determined using Computational Fluid Dynamics(CFD) method. Two kinds of motions are applied for calculating the dynamic yaw stability derivatives CNr and CNβ. The first one relates to a lateral translation and, separately, to a yaw rotation. The second one consists of a combined translational and rotational motion. To determine dynamic yaw stability derivatives, the simulation of an unsteady flow with a bird model showing a harmonic motion is performed. The flow solution for each time step is obtained by solving unsteady Euler equations based on a finite volume approach for a small reduced frequency. Then, an evaluation of unsteady forces and moments for one cycle is conducted using harmonic Fourier analysis. The results of the dynamic yaw stability derivatives for both simulations of the model show a good agreement.
机译:使用计算流体动力学(CFD)方法确定海鸥鸟类的动态偏航稳定性导数。应用两种运动来计算动态横摆稳定性导数CNr和CNβ。第一个涉及横向平移,并且分别涉及偏航旋转。第二个包括组合的平移运动和旋转运动。为了确定动态偏航稳定性导数,使用显示谐波运动的伯德模型对非恒定流进行了仿真。每个时间步的流动解是通过基于有限体积方法针对较小的减小频率求解非稳态Euler方程获得的。然后,使用谐波傅立叶分析对一个周期的非定常力和力矩进行评估。两种模型的动态偏航稳定性导数的结果都显示出良好的一致性。

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