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On the role of nonlinear distortion in the theory of wave-like aquatic propulsion

机译:非线性畸变在波浪式水推进理论中的作用

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Recent experimental investigations of small model boats propelled by propagating flexural waves carried out by the present author and his co-workers demonstrated viability of this type of propulsion as an alternative to a well-known screw propeller. Since the amplitudes of propagating flexural waves propelling the model boats are large enough, it is natural to consider the effect of nonlinear distortion of propagating localised flexural waves on generated thrust. This problem is explored in the present work by adding nonlinear harmonics of propulsive flexural waves to the well-known Lighthill's formula for generated thrust, which predicts a zero value of thrust in the case of linear flexural wave of constant amplitude. For simplicity, only the lowest (third) harmonic growing linearly with the distance of propagation is used. The resulting formula for the averaged thrust shows that, due to the effect of the third harmonic, the thrust is no longer zero, thereby demonstrating that nonlinear distortion of the propulsive flexural waves contributes positively to the generated thrust.
机译:作者和他的同事们对通过传播挠曲波推进的小型模型船进行的最新实验研究表明,这种推进力可以替代众所周知的螺旋桨。由于推动模型船的传播弯曲波的振幅​​足够大,因此自然要考虑传播局部弯曲波的非线性畸变对产生的推力的影响。在当前工作中,通过将推进挠曲波的非线性谐波添加到生成推力的著名Lighthill公式中,可以解决这个问题,该公式在恒定振幅的线性挠曲波的情况下可以预测推力为零。为简单起见,仅使用随传播距离线性增长的最低(三次)谐波。所得的平均推力公式表明,由于三次谐波的作用,推力不再为零,从而证明了推进挠曲波的非线性畸变对产生的推力有积极作用。

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