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An experimental study of net sediment transport rate due to acceleration-skewed oscillatory flows over rippled seabeds

机译:波动海床上加速度偏斜振荡引起的净泥沙输移速率的实验研究

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Wave-driven near-bed oscillatory flows can be acceleration-skewed due to the onshore leaning of shoaling waves in shallow coastal waters. A full-scale experimental study was conducted to investigate the acceleration-skewness-induced net sediment transport rate over coarse-sand rippled beds. A dataset of ripple geometry, migration and net sediment transport rate has been produced for oscillatory flows with different degrees of acceleration skewness. The steepness of equilibrium ripples decreases due to the effect of acceleration skewness and a consistent onshore ripple migration with a very low speed was observed for all the tests involving acceleration-skewed flows. The measured ripple-averaged net sediment transport rate is always in the direction of highest-acceleration (onshore) and increases with acceleration skewness. The magnitude of net transport rate is comparable to that due to velocity skewness, highlighting the necessity of considering acceleration skewness in modeling coastal sediment transport. The measurements can be well predicted by the formula of van der A et al. (2013), of which the calibration dataset does not cover such test conditions. The good model-data agreement suggests that sheet-flow and ripple-bed conditions share similar mechanisms by which acceleration skewness produces net transport rate.
机译:波浪驱动的近床振荡流可能会由于在浅海沿岸浅滩波浪向岸倾斜而加速倾斜。进行了全面的实验研究,以研究由加速偏斜引起的在粗砂波纹床上的净泥沙输送速率。对于具有不同程度的加速偏斜的振荡流,已经产生了波纹几何,迁移和净泥沙输送速率的数据集。平衡波纹的陡度由于加速度偏斜的影响而降低,并且在所有涉及加速度偏斜流的测试中均观察到以非常低的速度产生的一致的陆上波纹偏斜迁移。测得的波纹平均净泥沙输送速率始终沿最高加速度方向(陆上),并随加速度偏斜度而增加。净运移速度的大小可与速度偏斜度相媲美,这突出了在模拟沿海沉积物输移中考虑加速度偏斜的必要性。可以通过van der A等人的公式很好地预测测量结果。 (2013),其中校准数据集未涵盖此类测试条件。良好的模型数据一致性表明,表流和波纹床条件具有相似的机制,通过这种机制,偏斜会产生净传输速率。

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