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首页> 外文期刊>Bioinspiration & biomimetics >Quasi-steady aerodynamic model of clap-and-fling flapping MAV and validation using free-flight data
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Quasi-steady aerodynamic model of clap-and-fling flapping MAV and validation using free-flight data

机译:拍打和拍打襟翼飞行器的准稳态空气动力学模型和自由飞行数据验证

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Flapping-wing aerodynamic models that are accurate, computationally efficient and physically meaningful, are challenging to obtain. Such models are essential to design flapping-wing micro air vehicles and to develop advanced controllers enhancing the autonomy of such vehicles. In this work, a phenomenological model is developed for the time-resolved aerodynamic forces on clap-and-fling ornithopters. The model is based on quasi-steady theory and accounts for inertial, circulatory, added mass and viscous forces. It extends existing quasi-steady approaches by: including a fling circulation factor to account for unsteady wing-wing interaction, considering real platform-specific wing kinematics and different flight regimes. The model parameters are estimated from wind tunnel measurements conducted on a real test platform. Comparison to wind tunnel data shows that the model predicts the lift forces on the test platform accurately, and accounts for wing-wing interaction effectively. Additionally, validation tests with real free-flight data show that lift forces can be predicted with considerable accuracy in different flight regimes. The complete parameter-varying model represents a wide range of flight conditions, is computationally simple, physically meaningful and requires few measurements. It is therefore potentially useful for both control design and preliminary conceptual studies for developing new platforms.
机译:准确,计算效率高且在物理上有意义的襟翼空气动力学模型很难获得。此类模型对于设计襟翼微型航空器和开发先进的控制器以增强此类飞行器的自主性至关重要。在这项工作中,为拍拍和飞行的直升飞机上的时间分辨空气动力建立了一个现象学模型。该模型基于准稳态理论,并考虑了惯性,循环,附加质量和粘性力。它通过以下方式扩展了现有的准稳态方法:包括抛射循环因子,以考虑机翼特定的机翼运动学和不同的飞行方式,从而解决机翼与机翼之间的不稳定相互作用。模型参数是根据在实际测试平台上进行的风洞测量估算的。与风洞数据的比较表明,该模型可以准确地预测测试平台上的升力,并有效地解释了机翼与机翼之间的相互作用。此外,使用实际自由飞行数据进行的验证测试表明,可以在不同的飞行状态下以相当高的精度预测升力。完整的参数变化模型代表了广泛的飞行条件,计算简单,在物理上有意义,几乎不需要测量。因此,它对于开发新平台的控制设计和初步概念研究均可能有用。

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