论文标题

踏板的水下运动触发了高峰的共振

Pedal underwater motion triggers highly-peaked resonance on water waves

论文作者

Marín, Juan F., Egli, Alexander, Vivanco, Isis, Cartwright, Bruce, Gordillo, Leonardo

论文摘要

证明通过床轨道运动产生表面重力波的踏板波形者已显示出产生粒子偏移模式,这些模式模仿了深水波行为,但在有限的深度通道中。在本文中,我们报告说,一般粘性液中的重力波通过踏板制造商的作用产生共鸣。我们根据底部作用的位移幅度,频率和波长分析了无限通道中波的线性响应。我们表明,该系统在空间中的长途过滤器和及时的高通滤波器的表现,并具有受粘度影响的尖锐共振。此外,我们提出了一项协议,以在有限深度水通道中使用按需波长设计深重力波。我们的理论框架使用平滑粒子流体动力学的数值模拟一致。因此,我们的结果量化了踏板挥舞者的性能,并为踏板波浪技术的工业和计算应用提供了必不可少的公式,在液压和沿海工程问题中都有用。

Pedal wavemakers that generate surface gravity waves through bed orbital motion have been shown to produce particle-excursion patterns that mimic deep-water wave behaviour but in finite-depth channels. In this article, we report that gravity waves in a general viscous fluid can resonate through the action of pedal wavemakers. We analyse the linear response of waves in an infinite channel in terms of the displacement amplitude, frequency, and wavelength of the bottom action. We show that the system behaves as a long-pass filter in space and a high-pass filter in time with a sharp resonance affected by viscosity. Furthermore, we propose a protocol to design deep gravity waves with an on-demand wavelength in a finite-depth water channel. Our theoretical framework agrees with numerical simulations using Smoothed Particle Hydrodynamics. Our results thus quantify the performance of pedal wavemakers and provide essential formulas for industrial and computational applications of the pedal wavemaking technique, useful both in hydraulics and coastal engineering problems.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源