Influence of freshwater on the vertical structure of tidal currents: A case study of the Pearl River Estuary

IF 2.6 3区 地球科学 Q1 MARINE & FRESHWATER BIOLOGY Estuarine Coastal and Shelf Science Pub Date : 2024-08-10 DOI:10.1016/j.ecss.2024.108919
Jintao Gu, Yu Zhang, Shengli Chen, Yi Sui, Lei Li
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Abstract

Field observations in the Pearl River Estuary (PRE) indicate that vertical structures of tidal currents vary in different regions, which is associated with freshwater-induced stratification. A three-dimensional unstructured grid model (PRE-model) based on FVCOM is developed to study the mechanism of vertical structural changes in tidal currents. With the effect of freshwater, the amplitude of tidal currents increases in the upper layers and decreases in the bottom layers, and in regions with geometrical complexity, it is maximum in the middle depths. Momentum analysis indicates that vertical friction (VF), pressure gradient forces (PGF), and momentum advection (ADV) are the main factors leading to changes in tidal vertical structures. Variations of VF induced by stratification lead to an increase of tidal currents amplitude in the upper layers while a decrease in the bottom layers. Changes in PGF and ADV can also have significant impacts on tidal currents. Tidal frequency variations of density gradients result in pronounced tidal frequency baroclinic PGF in the bottom depths and enlarge total PGF. The amplitude of tidal currents increases at corresponding depths, which leads to subsurface maxima of tidal currents. ADV is special as its phase is variable relative to tidal currents, which can enhance or weaken tidal currents in different regions. The generation of tidal frequency baroclinic PGF is highly correlated with nonlinear processes, and the horizontal advection is considered the primary source of baroclinic PGF. The similar sources of ADV and baroclinic PGF also make them dominant in regions with geometrical complexity or large river plumes.

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淡水对潮流垂直结构的影响:珠江口案例研究
珠江口(PRE)的实地观测表明,潮汐流的垂直结构在不同区域有所不同,这与淡水引起的分层有关。为研究潮流垂直结构变化的机理,建立了基于 FVCOM 的三维非结构网格模型(珠江口模型)。在淡水的作用下,潮汐流振幅在上层增大,在底层减小,在几何结构复杂的区域,振幅在中层最大。动量分析表明,垂直摩擦力(VF)、压力梯度力(PGF)和动量平流(ADV)是导致潮汐垂直结构变化的主要因素。分层引起的垂直摩擦力变化导致上层潮汐流振幅增大,而底层潮汐流振幅减小。PGF 和 ADV 的变化也会对潮流产生重大影响。密度梯度的潮汐频率变化会导致底层出现明显的潮汐频率条纹状 PGF,并扩大总 PGF。相应深度的潮汐流振幅增大,从而导致潮汐流的次表层最大值。ADV 的特殊性在于它的相位相对于潮流是可变的,它可以增强或减弱不同区域的潮流。潮汐频率条纹状 PGF 的产生与非线性过程高度相关,水平平流被认为是条纹状 PGF 的主要来源。ADV 和条纹状 PGF 的来源相似,这也使它们在具有几何复杂性或大型河流羽流的地区占据主导地位。
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来源期刊
CiteScore
5.60
自引率
7.10%
发文量
374
审稿时长
9 months
期刊介绍: Estuarine, Coastal and Shelf Science is an international multidisciplinary journal devoted to the analysis of saline water phenomena ranging from the outer edge of the continental shelf to the upper limits of the tidal zone. The journal provides a unique forum, unifying the multidisciplinary approaches to the study of the oceanography of estuaries, coastal zones, and continental shelf seas. It features original research papers, review papers and short communications treating such disciplines as zoology, botany, geology, sedimentology, physical oceanography.
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