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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Hydrodynamic and sediment transport modeling of New River Inlet (NC) under the interaction of tides and waves
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Hydrodynamic and sediment transport modeling of New River Inlet (NC) under the interaction of tides and waves

机译:潮汐与波浪相互作用下的新河口水动力与泥沙输送模拟

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The interactions between waves, tidal currents, and bathymetry near New River Inlet, NC, USA are investigated to understand the effects on the resulting hydrodynamics and sediment transport. A quasi-3-D nearshore community model, NearCoM-TVD, is used in this integrated observational and modeling study. The model is validated with observations of waves and currents at 30 locations, including in a recently dredged navigation channel and a shallower channel, and on the ebb tidal delta, for a range of flow and offshore wave conditions during May 2012. In the channels, model skills for flow velocity and wave height are high. Near the ebb tidal delta, the model reproduces the observed rapid onshore (offshore) decay of wave heights (current velocities). Model results reveal that this sharp transition coincides with the location of the breaker zone over the ebb tidal delta, which is modulated by semidiurnal tides and by wave intensity. The modulation of wave heights is primarily owing to depth changes rather than direct wavecurrent interaction. The modeled tidally averaged residual flow patterns show that waves play an important role in generating vortices and landward-directed currents near the inlet entrance. Numerical experiments suggest that these flow patterns are associated with the channel-shoal bathymetry near the inlet, similar to the generation of rip currents. Consistent with other inlet studies, model results suggest that tidal currents drive sediment fluxes in the channels, but that sediment fluxes on the ebb tidal delta are driven primarily by waves.
机译:研究了美国北卡罗来纳州New River Inlet附近的波浪,潮流和测深之间的相互作用,以了解对由此产生的水动力和泥沙输送的影响。在该综合观测和建模研究中使用了准3维近岸社区模型NearCoM-TVD。通过对30个位置(包括最近疏navigation的导航通道和较浅的通道以及潮汐三角洲)在2012年5月期间的各种流动和近海波浪情况下的波浪和海流观测进行验证,验证了该模型的有效性。流速和波高的模型技巧很高。在潮汐潮汐三角洲附近,该模型再现了观测到的波高(当前速度)在岸上(近海)的快速衰减。模型结果表明,这种陡峭的过渡与潮汐三角洲上破碎带的位置相吻合,潮汐带由半日潮和波浪强度调节。波高的调制主要是由于深度变化,而不是直接的波流相互作用。潮汐平均残余流模式的模型表明,波浪在入口附近产生旋涡和地面定向流方面起着重要作用。数值实验表明,这些流动模式与入口附近的通道浅滩测深法有关,类似于裂隙电流的产生。与其他入口研究一致,模型结果表明,潮流驱动河道中的泥沙通量,但潮汐带三角洲上的泥沙通量主要由波浪驱动。

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