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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >The role of morphology and wave-current interaction at tidal inlets: An idealized modeling analysis
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The role of morphology and wave-current interaction at tidal inlets: An idealized modeling analysis

机译:潮汐入口处的形态和波浪电流相互作用的作用:一种理想化建模分析

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The outflowing currents from tidal inlets are influenced both by the morphology of the ebbtide shoal and interaction with incident surface gravity waves. Likewise, the propagation and breaking of incident waves are affected by the morphology and the strength and structure of the outflowing current. The 3-D Coupled Ocean-Atmosphere-Wave-Sediment Transport (COAWST) modeling system is applied to numerically analyze the interaction between currents, waves, and bathymetry in idealized inlet configurations. The bathymetry is found to be a dominant controlling variable. In the absence of an ebb shoal and with weak wave forcing, a narrow outflow jet extends seaward with little lateral spreading. The presence of an ebb-tide shoal produces significant pressure gradients in the region of the outflow, resulting in enhanced lateral spreading of the jet. Incident waves cause lateral spreading and limit the seaward extent of the jet, due both to conversion of wave momentum flux and enhanced bottom friction. The interaction between the vorticity of the outflow jet and the wave stokes drift is also an important driving force for the lateral spreading of the plume. For weak outflows, the outflow jet is actually enhanced by strong waves when there is a channel across the bar, due to the "return current" effect. For both strong and weak outflows, waves increase the alongshore transport in both directions from the inlet due to the wave-induced setup over the ebb shoal. Wave breaking is more influenced by the topography of the ebb shoal than by wave-current interaction, although strong outflows show intensified breaking at the head of the main channel.
机译:来自潮汐入口的流出电流是受ebbete浅滩的形态和与入射表面重力​​波的相互作用影响。同样地,入射波的传播和破坏受到外流电流的形态和强度和结构的影响。 3-D耦合的海洋气氛波沉积物传输(CoAWST)建模系统用于数值分析理想入口配置中电流,波和沐浴术之间的相互作用。发现沐浴物是一个主导的控制变量。在没有EBB浅滩和弱波形迫使的情况下,狭窄的流出射流延伸海向横向扩散。在流出区域的区域中存在显着的压力梯度,导致射流的横向扩散增强。入射波会导致横向扩散并限制喷射的海上范围,由于波动动量通量转化和增强的底部摩擦。流出射流的涡旋之间的相互作用和波浪斯托克斯漂移也是羽流横向扩散的重要驱动力。对于弱流量,由于栏中存在通道,因此由于“返回电流”效果,通过强波实际上增强了流出射流。对于强大而弱的流出,由于波浪诱导的EBB浅滩,波浪从入口增加了从入口的两个方向上的往往运输。虽然波动相互作用,波浪断裂更受影响的地形浅,但是强烈的外流显示在主通道头部的突然发生断裂。

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