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Interaction between oblique waves and arc-shaped breakwater: Wave action on the breakwater and wave transformation behind it

机译:倾斜波与弧形防波堤之间的相互作用:在抗静水上的波动和波动变换

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The hydrodynamic interaction between oblique waves and an arc-shaped breakwater and the wave field behind it. A three-dimensional computational fluid dynamic model was used to simulate the interaction between the oblique waves and arc-shaped breakwater. The pressure distribution and wave force in the different sections under different wave directions were measured by experiments to validate the numerical results. The pressure distribution and wave force in the arc-shaped vertical part of the breakwater along the central axis were further analysed using numerical model. The maximum positive and negative forces in each section along the central axis were compared. The results indicated that the arc curvature exerted little effect on the maximum wave force in the different sections. The wave height behind the breakwater was obviously smaller than that at the front. With the decrease in the incident angle, the influence of diffraction on the wave field gradually decreased. Under east-southeast waves, the maximum wave height behind the breakwater caused by overtopping was approximately 0.7 times the incident-wave height. In the spatial distribution of the wave period behind the breakwater, some areas with smaller periods existed, which may be caused by the overtopping flow that broke behind the breakwater.
机译:斜波与弧形防波堤之间的流体动力相互作用及其背后波场。三维计算流体动力学模型用于模拟倾斜波和弧形防波堤之间的相互作用。通过实验测量不同波方向下不同部分下的不同部分中的压力分布和波力以验证数值结果。使用数值模型进一步分析了沿着中心轴的防波堤的弧形垂直部分中的压力分布和波力。比较了沿中心轴的每个部分中的最大正力和负力。结果表明,电弧曲率对不同部分中的最大波力产生了不大影响。防堤后面的波浪高度明显小于前面的波浪。随着入射角的降低,衍射对波场的影响逐渐减少。在东南波浪下,通过速度造成的防堤后面的最大波浪高度约为入射波高度的0.7倍。在防波堤后面的波浪时段的空间分布中,存在具有较小时段的一些区域,这可能是由破碎后面破坏的旧流量引起的。

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