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Sand Waves Generation: A Numerical Investigation of the Infiernillo Channel in the Gulf of California

机译:沙波的产生:加利福尼亚湾英菲尼洛河道的数值研究

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The effect of the coastal geometry on sand bed forms generation has been investigated for a tidal dominated area. Different hypothetical geometries of coastal channels with flat bottoms and unlimited sediment availability were exposed to strong oscillatory tidal currents to simulate the interaction of hydrodynamics and the bedload sediment transport. The hypothetical geometries stand for the idealization of the principal geographic features of the Infiernillo Channel, a coastal area of the Gulf of California where sandbanks and sand waves have been observed. A depth integrated hydrodynamic-numerical model and a parameterized formula to estimate the bedload sediment transport were applied coupled with a sediment conservation equation to determine the sea bottom morphodynamics. Model predictions in the Infiernillo Channel were compared to available satellite imagery. This investigation demonstrates that a vertical integrated numerical model is able to reproduce the development of incipient sand waves that exist in the Infiernillo Channel. Incipient sandbanks and shoals were also simulated. Sand waves with wavelengths of about 200 m were calculated on the same locations where sand waves actually exist. A crucial finding of this research was to show that the geometry of a shallow water basin and the presence of tidal velocity gradients associated with abrupt changes in the coastline alignment were critical in determining the sand-bed pattern generation. We demonstrate that a vertical variation of tidal currents is not necessary to generate sand waves.
机译:对于潮汐占主导的地区,已经研究了沿海几何形状对沙床形式生成的影响。具有平坦底部和无限沉积物可利用性的沿海航道的不同假设几何形状受到强烈的振荡潮汐流的影响,以模拟水动力与床荷输沙作用的相互作用。假设的几何形状代表了英菲尼洛河道(Infiernillo Channel)的主要地理特征的理想化,英菲尔尼洛河道是在加利福尼亚湾的沿海地区,在那里观察到了沙洲和沙波。应用深度综合水动力数值模型和估计床底沉积物运移的参数化公式,并结合沉积物守恒方程来确定海底形态动力学。将Infiernillo频道中的模型预测与可用的卫星图像进行了比较。这项研究表明,垂直积分数值模型能够重现英菲尼洛河道中存在的初始沙波的发展。还模拟了初期的沙洲和浅滩。在实际存在沙波的相同位置计算出波长约为200 m的沙波。这项研究的关键发现是,表明浅水盆地的几何形状以及与海岸线直线变化有关的潮汐速度梯度的存在对确定砂床格局的产生至关重要。我们证明潮汐流的垂直变化对于产生沙波不是必需的。

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