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Wave-current interactions in a tide dominated estuary

机译:潮汐主导河口中的波流相互作用

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There is a need to understand the interactions of waves and currents in the nearshore and estuarine areas. By using observational data and an advanced model an assessment of the wave-current interactions was performed in a hypertidal estuary. The circulation model includes both barotropic and baroclinic processes arising from tides, rivers and atmospheric forcing. It is coupled to a spectral wave model and a turbulence model. Waves within the estuary are strongly modulated by the tide. Significant wave height and period are mainly controlled by time-varying water depth, but wave periods are also affected by a Doppler shift produced by the current. The major-axis depth-averaged current component is tidally dominated and wave-induced processes do not have a significant effect on it However, the inclusion of wave effects, in particular 3D radiation stress, improves the depth-averaged minor-axis (transverse) current component. The residual currents show a clear two-layer system, indicating that the baroclinic river influence is the dominant process. The wave effects are second order, but their consideration improves the long-term modelled residual circulation profile, specially the along estuary component. The main improvement appears when a 3-dimensional radiation stress coupling is considered. The 3D version of radiation stress produced better results than the 2D version. Within the estuary, wave setup has little effect on the storm surge, while 2-way wave-current interaction improved the wave simulation. Using a 3D Doppler shift further improved the model compared with using a 2D version.
机译:有必要了解近岸和河口地区的波浪和水流的相互作用。通过使用观测数据和高级模型,在潮汐河口进行了波流相互作用的评估。循环模型包括潮汐,河流和大气强迫引起的正压和斜压过程。它与频谱波模型和湍流模型耦合。河口内的波浪受到潮汐的强烈调制。重要的波高和周期主要受随时间变化的水深控制,但波的周期也受水流产生的多普勒频移的影响。长轴深度平均电流分量在潮汐控制中占主导地位,波感应过程对此没有显着影响。但是,包含波效应,特别是3D辐射应力,可以改善深度平均短轴(横向)当前组件。剩余电流显示出清晰的两层系统,表明斜压河影响是主要过程。波浪效应是二阶的,但考虑这些因素可以改善长期模拟的残余环流剖面,特别是沿河口的分量。当考虑三维辐射应力耦合时,将出现主要改进。 3D版本的辐射应力比2D版本产生更好的结果。在河口内,波浪形成对风暴潮的影响很小,而两向波流相互作用改善了波浪模拟。与使用2D版本相比,使用3D多普勒频移进一步改善了模型。

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