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Modelling offshore sand wave evolution

机译:模拟海上沙波演化

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We present a two-dimensional vertical (2DV) flow and morphological numerical model describing the behaviour of offshore sand waves. The model contains the 2DV shallow water equations, with a free water surface and a general bed load formula. The water movement is coupled to the sediment transport equation by a seabed evolution equation. Using this model, we investigate the evolution of sand waves in a marine environment. As a result, we find sand wave saturation for heights of 10-30% of the average water depth on a timescale of decades. The stabilization mechanism, causing sand waves to saturate, is found to be based on the balance between the shear stress at the seabed and the principle that sediment is transported more easily downhill than uphill. The migration rate of the sand waves decreases slightly during their evolution. For a unidirectional steady flow the sand waves become asymmetrical in the horizontal direction and for a unidirectional block current asymmetrical in the vertical. A sensitivity analysis showed the slope effect of the sediment transport plays an important role herein. Furthermore, the magnitude of the resistance at the seabed and the eddy viscosity influence both the timescale and height of sand waves. The order of magnitudes found of the time and spatial scales coincide with observations made in the southern bight of the North Sea, Japan and Spain. (c) 2006 Elsevier Ltd. All rights reserved.
机译:我们提出了一个二维垂直(2DV)流动和形态学数值模型来描述近海砂波的行为。该模型包含2DV浅水方程,具有自由水面和一般​​的床层荷载公式。水运动通过海床演化方程与沉积物运移方程耦合。使用此模型,我们研究了海洋环境中沙波的演变。结果,我们发现在数十年的时间尺度内,沙波的饱和度为平均水深的10%至30%。人们发现,导致沙波饱和的稳定机制是基于海床的剪切应力与沉积物在下坡比上坡更容易输送的原理之间的平衡。沙波在其演化过程中的迁移速率略有下降。对于单向稳定流,沙波在水平方向上变得不对称,而对于单向阻塞流,在垂直方向上则变得不对称。敏感性分析表明,泥沙输送的边坡效应在这里起着重要作用。此外,海底电阻的大小和涡流粘度会影响沙浪的时间尺度和高度。发现的时间和空间尺度的数量级与在北海,日本和西班牙的南部海岸线进行的观测相吻合。 (c)2006 Elsevier Ltd.保留所有权利。

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