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Solitary Waves Incident on a Submerged Horizontal Plate

机译:浸没在水平板上的孤立波入射

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摘要

Wave scattering of a solitary wave traveling over a submerged horizontal plate was studied. Experiments for normal incidence were conducted in a wave flume, with a horizontal plate suspended at two different depths in the middle of the flume. Gauge pressures above and underneath the plate, surface elevations on and near the plate, and flow velocities at three representative fields of view were measured. The flow underneath the plate was found to behave almost like a plug flow, driven by the time-dependent, spatially uniform pressure gradient between the two openings. Complex vortices formed near the two edges of the plate as the plate acted like a flow divider. A numerical model based on two-dimensional Navier-Stokes equations was used to confirm the main features captured by the experimental measurements. Analytical solutions based on the linear long wave theory, which admits a soliton-like impulse wave solution, were also derived. The linear theory was applicable for obliquely incident impulse waves. When the analytical solutions were applied to the wave conditions used in the experiments, it was found that the theory described pressure and surface elevation satisfactorily when the nonlinearity was insignificant. Based on the pressure distribution above and beneath the plate, the total vertical force and moment exerted on the plate were calculated. As the wave passed over the plate, the plate first experienced a lift, followed by a force in the downward direction, and then a lift again. As a result, a nonzero time-varying moment existed. The analytical solution was also utilized to examine the effects of relative plate width on the transmitted and reflected waves. The effects of the angle of incidence are also discussed briefly.
机译:研究了在水下水平板上传播的孤波的波散射。在波浪形水槽中进行垂直入射实验,水平板悬挂在水槽中间的两个不同深度处。测量了板上方和下方的表压,板上方和附近的表面高度以及三个代表性视野的流速。发现在两个开口之间的时间依赖性,空间均匀的压力梯度的驱动下,板下方的流动几乎像塞流一样。当板的作用像分流器时,在板的两个边缘附近形成复杂的涡流。基于二维Navier-Stokes方程的数值模型用于确认实验测量所捕获的主要特征。还推导了基于线性长波理论的解析解,它接受了类孤子脉冲波解。线性理论适用于斜入射脉冲波。当将解析解应用于实验中使用的波浪条件时,发现当非线性无关紧要时,该理论令人满意地描述了压力和表面高度。基于板上方和下方的压力分布,计算了施加在板上的总垂直力和力矩。当波浪通过平板时,平板首先升起,然后受到向下的力,然后再次升起。结果,存在非零的时变矩。分析解决方案还用于检查相对板宽对透射波和反射波的影响。还简要讨论了入射角的影响。

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