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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Simulation of sediment motions using a discrete particle model in the inner surf and swash-zones
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Simulation of sediment motions using a discrete particle model in the inner surf and swash-zones

机译:使用内部海浪和急流带中的离散粒子模型模拟泥沙运动

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A volume-of-fluid Navier-Stokes solver (RIPPLE) was used to simulate inner surf and swash zone flow with a 3 s wave period and wave height of 0.14 m on a planar, 1:10 sloping beach (Iribarren number of 1.0). In addition to other hydrodynamic information, RIPPLE was used to provide high-resolution predictions of the pressure gradient and fluid velocity in the horizontal and vertical dimensions that served as forcing to a discrete particle model (DPM). Sediment transport processes in the inner surf and swash zones were simulated for a thin veneer of sediment particles over a 5 in test section in the DPM. Coupling between RIPPLE and the DPM was one-way such that particle-particle and fluid-particle interactions in the DPM did not provide feedback to alter the flow predicted by RIPPLE. The numerical simulation showed strong sediment suspension localized under vortices that reach the bed. Interestingly, the bulk of the sediment located in the small-scale vortex originated from locations nearly 0.2 m landward. These findings suggest that (1) sediment motion for a single swash event can be significant, (2) that sediment measured in suspension likely originates from locations other than the bed directly below the suspension plume suggesting the importance of sediment advection and (3) that sparse cross-shore measurements in the field will only sporadically capture localized suspension events. Published by Elsevier Ltd.
机译:流体体积的Navier-Stokes解算器(RIPPLE)用于在1:10倾斜的平面海滩上以3 s的波周期和0.14 m的波高模拟内部海浪和斜带流(伊里巴伦数为1.0) 。除了其他流体力学信息外,RIPPLE还用于提供水平和垂直方向上的压力梯度和流体速度的高分辨率预测,这些预测将强制采用离散粒子模型(DPM)。在DPM的测试区域内,模拟了海浪和急流带内泥沙的输送过程,以发现薄薄的一层泥沙颗粒。 RIPPLE与DPM之间的耦合是单向的,因此DPM中的粒子-粒子和流体-粒子相互作用不会提供反馈来更改RIPPLE预测的流量。数值模拟表明,强沉积物悬浮物位于到达床层的涡旋下。有趣的是,位于小规模旋涡中的大部分沉积物来自陆上近0.2 m的位置。这些发现表明,(1)单个斜流事件的泥沙运动可能很重要;(2)悬浮液中测得的沉积物可能来自悬浮羽流正下方的床层以外的其他位置,这表明了沉积物对流的重要性,(3)现场的跨岸稀疏测量只会偶尔捕获局部悬浮事件。由Elsevier Ltd.发布

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