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首页> 外文期刊>International Journal of Offshore and Polar Engineering >Numerical Modeling for Gravel Beach Deformation Using 2-Way Method
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Numerical Modeling for Gravel Beach Deformation Using 2-Way Method

机译:砾石滩变形的二维方法数值模拟

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摘要

Fluid motions of waves interact with bed materials mainly through the bottom shear stress caused by water particle motion near the bottom, which leads to topographical changes. The altered bottom profile, in turn, affects the wave fields, and changes in these fields can lead to sequential bottom profile change. Most of the studies on the sediment problems, however, have not considered the effects of the altered bottom profile on wave fields. To predict topographical changes more accurately, the changed bottom profile should be reflected in calculation of wave fields over time, i.e., the 2-way method is required. In this study, a numerical model considering dynamic interactions between wave fields and topography change caused by on-offshore sediment transports is proposed to estimate the topographic change of gravel beaches. The new feature of the present model is the integration of the wave and sediment model. Comparison between numerical and existing experimental results showed that the present model is useful to simulate wave fields and the beach topographical change of gravel beaches. In particular, the newly developed model based on the 2-way method, in which the dynamic interaction between fluid motion and sediments can be considered through the feedback process, greatly improves prediction of the gravel beach profiles.
机译:波浪的流体运动主要通过底部附近水颗粒运动引起的底部剪切应力与床层材料相互作用,从而导致地形变化。改变的底部轮廓反过来会影响波场,这些场中的变化会导致连续的底部轮廓变化。但是,大多数关于沉积物问题的研究都没有考虑底部剖面的变化对波场的影响。为了更准确地预测地形变化,应将变化的底部轮廓反映在随时间变化的波场中,即需要使用2向法。在这项研究中,提出了一种考虑波浪场与海洋沉积物迁移引起的地形变化之间的动态相互作用的数值模型,以估计砾石滩的地形变化。本模型的新特征是波浪和泥沙模型的整合。数值与现有实验结果的比较表明,该模型对于模拟波浪场和砾石滩滩形貌变化是有用的。特别地,基于两向方法的新开发的模型极大地改善了砾石滩剖面的预测,该模型可以通过反馈过程考虑流体运动与沉积物之间的动态相互作用。

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