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Numerical investigation on hydrodynamic performance of an innovative aeration device with an array of wave-driven heaving buoys

机译:具有波浪悬挂式浮标阵列的创新曝气装置流体动力性能的数值研究

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In the recent decades, the occurrence of hypoxia in coastal bottom waters has had adverse influences on the ecological system and fishery production. Therefore, to address this, an innovative aeration device with an array of four wave-driven heaving buoys was proposed in this study to produce bubbles and supply oxygen into the bottom seawater. A series of laboratory experiments were conducted to investigate the hydrodynamic performance of the device in regular waves, and a relatively simple 3-D computational fluid dynamics (CFD) numerical model was used to simulate the motion response of the array of four heaving buoys. The results indicate that the average heaving amplitude (AHA) and the capture width ratio (CWR) of the seaside buoy are higher than those of the lee-side buoy. Specifically, with increasing incident wave height, AHA increases but CWR decreases. Both AHA and CWR decrease with the increments in incident wave steepness, relative height and density of buoy and relative equivalent damping coefficient. Furthermore, the prediction formulas were calculated to assess the AHA of the seaside and lee-side buoys with a relatively high accuracy. The results obtained are significant for the optimal design and operation of the proposed innovative aeration device.
机译:近几十年来,沿海底部水域缺氧的发生对生态系统和渔业生产具有不利影响。因此,为了解决这一点,在该研究中提出了一种具有四个波浪驱动的浮标浮标阵列的创新曝气装置,以产生气泡并将氧气供应到底部海水中。进行了一系列实验室实验以研究常规波中器件的流体动力学性能,并且使用相对简单的3-D计算流体动力学(CFD)数值模型来模拟四个气浮阵列的阵列的运动响应。结果表明海边浮标的平均气象幅度(AHA)和捕获宽度(CWR)高于李侧浮标的捕获宽度比(CWR)。具体而言,随着事故波高的增加,AHA增加但CWR减小。 AHA和CWR都随着入射波陡度,相对高度和浮标密度的增量和相对等效的阻尼系数而减小。此外,计算预测公式以评估海方和李侧浮标的AHA,具有相对高的精度。所获得的结果对于所提出的创新曝气设备的最佳设计和操作是显着的。

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