襟翼造波器产生非线性波的实验研究

Sébastien Fouques, S. Lafleche, A. Akselsen, T. Sauder
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引用次数: 0

摘要

众所周知,当襟翼角度或襟翼速度变大时,襟翼造波器表现出非线性行为。此外,铰链深度应与产生波的周期相适应,以尽量减少可能导致非线性杂散波形成的线性倏逝模态。例如,对一个较短的襟翼施加周期较长、幅度较大的正弦运动,会产生一个由与襟翼运动周期相同的规则波组成的表面高程,但也有多种频率较高的谐波。对于规则波和不规则波,二阶谐波可以从理论上进行预测,并且可以通过修改制波器的控制信号进行校正。然而,没有理论可以描述或减轻高于2级的影响。因此,造波器的设计对于在实验室中产生高质量和可预测性的极端海况至关重要。本文研究了在SINTEF海洋实验室产生的规则波和不规则波中襟翼造波器的非线性特性。利用一组波探在不同位置测量的地表高程时间序列,估计了二阶和三阶非线性。特别着重于确定经典二阶校正对二阶和三阶谐波的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Experimental Investigation of Nonlinear Wave Generation by Flap Wavemakers
It is well known that flap wavemakers behave in a nonlinear way when either the flap angle or the flap velocity becomes large. Moreover, the hinge depth should be adapted to the period of the generated waves in order to minimize linear evanescent modes, which may contribute to the formation of nonlinear spurious waves. For example, imposing a sinusoidal motion with a relatively long period and a large amplitude to a short flap will result in a surface elevation composed of a regular wave with the same period as the flap motion, but also of a variety of harmonics with higher frequencies. Second-order harmonics can be predicted theoretically for regular and irregular waves, and they can be corrected by modifying the control signal of the wavemaker. However, there is no theory that can describe nor mitigate effects of orders higher than two. The design of the wavemaker is then essential to generate extreme sea states with good quality and predictability in a laboratory. In this paper, the nonlinearities of flap wavemakers are investigated experimentally for regular and irregular waves generated in SINTEF Ocean’s laboratories. Nonlinearities of order two and three are estimated from times series of the surface elevation measured at different locations by an array of wave probes. Particular focus is put on identifying the effects of the classical second-order correction on the second- and third-order harmonics.
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