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首页> 外文期刊>Journal of Physical Oceanography >Modeling Influence of Stratification on Lateral Circulation in a Stratified Estuary
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Modeling Influence of Stratification on Lateral Circulation in a Stratified Estuary

机译:分层对河口中环流的影响

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摘要

The dynamics of lateral circulation in the Passaic River estuary is examined in this modeling study. The pattern of lateral circulation varies significantly over a tidal cycle as a result of the temporal variation of stratification induced by tidal straining. During highly stratified ebb tides, the lateral circulation exhibits a vertical two-cell structure. Strong stratification suppresses vertical mixing in the deep channel, whereas the shoal above the halocline remains relatively well mixed. As a result, in the upper layer, the lateral asymmetry of vertical mixing produces denser water on the shoal and fresher water over the thalweg. This density gradient drives a circulation with surface currents directed toward the shoal, and the currents at the base of the pycnocline are directed toward the thalweg. In the lower layer, the lateral circulation tends to reduce the tilting of isopycnals and gradually diminishes at the end of the ebb tide. A lateral baroclinic pressure gradient is a dominant driving force for lateral circulation during stratified ebb tides and is generated by differential diffusion that indicates a lateral asymmetry in vertical mixing. Over the thalweg, vertical mixing is strong during the flood and weak during the ebb. Over the shoal, the tidally periodical stratification shows an opposite cycle of that at the thalweg. Lateral straining tends to enhance stratification during flood tides and vertical diffusion maintains the relatively well-mixed water column over the shoal during the stratified ebb tides.
机译:在此模拟研究中,研究了Passaic河口的横向循环动力学。由于潮汐应变引起的分层随时间变化,横向循环的模式在一个潮汐周期中会发生显着变化。在高度分层的退潮期间,侧向循环表现出垂直的两单元结构。强分层抑制了深通道中的垂直混合,而盐环上方的浅滩仍保持相对良好的混合。结果,在上层,垂直混合的横向不对称性在浅滩上产生了较浓的水,而在thalweg上产生了较新鲜的水。该密度梯度以表面电流流向浅滩的方式驱动循环,而比克可可线底部的电流则流向海藻。在下层,侧向循环趋向于减少等密度线的倾斜,并在退潮结束时逐渐减小。侧斜压梯度是分层退潮期间侧向循环的主要驱动力,它由指示垂直混合中的侧向不对称性的微分扩散产生。在thalweg上,洪水期间垂直混合强烈,而在退潮期间垂直混合弱。在浅滩上,潮汐周期性的分层显示出与海豚相反的周期。在潮汐潮汐期间,侧向应变往往会增强分层,而垂直扩散会在分层潮汐潮汐期间保持​​浅滩上相对均匀混合的水柱。

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  • 来源
    《Journal of Physical Oceanography》 |2009年第9期|2324-2337|共14页
  • 作者单位

    School of Marine and Atmospheric Sciences, Stony Brook University, Stony Brook, New York 3600 Windmeadows Blvd., Apt. 43, Gainsville, FL 32608;

    School of Marine and Atmospheric Sciences, Stony Brook University, Stony Brook, New York;

    Institute of Marine and Coastal Sciences, Rutgers, The State University of New Jersey, New Brunswick, New Jersey;

    Department of Marine and Ecological Sciences, Florida Gulf Coast University, Fort Myers, Florida;

    School of Marine and Atmospheric Sciences, Stony Brook University, Stony Brook, New York;

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