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首页> 外文期刊>Journal of Fluid Mechanics >Thrust, drag and wake structure in flapping compliant membrane wings
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Thrust, drag and wake structure in flapping compliant membrane wings

机译:扑振兼容膜翼的推力,阻力和唤醒结构

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We present a theoretical framework to characterize the steady and unsteady aeroelastic behaviour of compliant membrane wings under different conditions. We develop an analytic model based on thin airfoil theory coupled with a membrane equation. Adopting a numerical solution to the model equations, we study the effects of wing compliance, inertia and flapping kinematics on aerodynamic performance. The effects of added mass and fluid damping on a flapping membrane are quantified using a simple damped oscillator model. As the flapping frequency is increased, membranes go through a transition from thrust to drag around the resonant frequency, and this transition is earlier for more compliant membranes. The wake also undergoes a transition from a reverse von Karman wake to a traditional von Karman wake. The wake transition frequency is predicted to be higher than the thrust-drag transition frequency for highly compliant wings.
机译:我们提出了一个理论框架,以表征在不同条件下柔顺膜翅膀的稳定和不稳定的空气弹性行为。 我们基于薄翼型理论的分析模型与膜方程联接耦合。 采用模型方程的数值解决方案,我们研究机翼合规性,惯性和拍打运动学对空气动力学性能的影响。 使用简单的阻尼振荡器模型量化添加质量和流体阻尼在拍摄膜上的效果。 随着拍打频率的增加,膜通过从推力过渡到绕谐振频率拖动,并且该转变更早用于更柔顺的膜。 唤醒也经历了从反向von Karman唤醒到传统的von Karman醒来的过渡。 预计唤醒转换频率高于高度兼容翼的推力拖拉过渡频率。

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