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GREEN WATER FLOW ON A FIXED MODEL STRUCTURE IN A LARGE WAVE BASIN UNDER RANDOM WAVES

机译:随机波作用下大流域固定模型结构上的绿水流动

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Green water generated by random waves on a fixed, simplified geometry model structure was measured in a large wave basin. The velocity field of the flow that is aerated and highly turbulent was quantified using the bubble image velocimetry (BIV) technique. BIV utilizes shadow textures created by air-water interfaces as tracers in backlit images recorded by a high speed camera. The tracers in consecutive images are then cross-correlated to obtain the corresponding two-dimensional velocities. Random waves were generated by the JONSWAP spectrum with a significant wave height close to the freeboard. An image-based triggering method was employed to detect the green water events and trigger image acquisition. A total of 179 green water events were collected and categorized into three different types, based on the flow behavior. That includes the collapse of overtopping wave, fall of bulk water, and breaking wave crest. Statistical distributions of maximum green water velocities under random waves were developed, while the lognormal distribution was found as the best fit. By modeling the green water as a dam break flow, the Ritter solution was found to be able to capture the horizontal velocity distribution for the random green water events. A prediction equation for the green water velocity distribution under random waves was also obtained.
机译:在大型波浪盆地中,对固定的简化几何模型结构上的随机波浪产生的绿水进行了测量。使用气泡图像测速(BIV)技术对充气和高度湍流的速度场进行定量。 BIV利用空气-水界面产生的阴影纹理作为高速相机记录的背光图像中的示踪剂。然后将连续图像中的示踪剂互相关以获得相应的二维速度。通过JONSWAP频谱生成了随机波,其中很大的波高接近于干舷。基于图像的触发方法被用来检测绿水事件并触发图像采集。根据流动行为,总共收集了179个绿水事件并将其分为三种不同类型。其中包括越过顶峰的波浪崩塌,散落的水和破裂的波峰。建立了随机波浪作用下最大绿水速度的统计分布,而对数正态分布被认为是最佳拟合。通过将绿水建模为溃坝水流,发现Ritter解决方案能够捕获随机绿水事件的水平速度分布。还获得了随机波作用下绿水速度分布的预测方程。

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