首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >A model study of the effects of river discharges and interannual variation of winds on the plume front in winter in Pearl River Estuary
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A model study of the effects of river discharges and interannual variation of winds on the plume front in winter in Pearl River Estuary

机译:珠江口冬季河道流量和年际变化对羽流锋影响的模型研究。

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摘要

A three-dimensional numerical model, Estuarine, Coastal and Ocean Modeling System with Sediments (ECOMSED), is employed to study the mechanism of plume front in the Pearl River Estuary (PRE) in detail. The model is forced by winds, tides and river discharges. The modeled results of tidal elevation, current velocity and salinity are in reasonable agreement with observational data in the PRE. By analyzing momentum and saltwater transport balance equations, it is found that the wind stress term, the pressure gradient term and the local time derivative term of velocity are dominant in the momentum equation, while the local time derivative term, the horizontal advective term and the vertical mixing term of salinity are dominant in the salinity transport equation. The residual current at surface along the plume front is seaward and stronger, whilst that in the bottom layer is mainly landward. A series of sensitive experiments is also run to examine the responses of plume front to changes of river discharges at different inlets in Lingdingyang Bay and interannual variation of northeast winds in winter. The location of plume front responds differently to the change of river discharge at different inlets. An increase in the river discharge at Dahu inlet seems to affect the location of plume front most among the four river inlets, it makes the plume front move eastward and southward wholly; the variation of river discharge at Nansha or Fengmamiao inlet on the location of plume front is more local and weaker; whilst the variation of river discharge at Hengmen inlet has little effect on the plume front. The location of plume front also changes in response to the interannual variation of northeast winds in winter, the stronger or the more eastward the winds are, the more westward the plume front moves, and only in the northern PRE, the response of plume front to the variation of wind speeds is largely different from that to the variation of wind directions.
机译:利用三维数值模型河口,海岸和海洋沉积物模拟系统(ECOMSED),详细研究了珠江口(PRE)羽状流的机理。该模型受风,潮汐和河流排放的推动。潮汐升高,流速和盐度的模拟结果与PRE中的观测数据合理吻合。通过分析动量和盐水运移平衡方程,发现风应力方程中的风应力项,压力梯度项和局部时间导数项在动量方程中占主导地位,而局部时间导数项,水平对流项和动量方程则占主导地位。盐度的垂直混合项在盐度运移方程中占主导地位。沿羽流前沿表面的残余电流向海且较强,而底层的残余电流则主要向陆。还进行了一系列敏感实验,以研究羽顶对Ling顶洋湾不同进水口河流量变化和冬季东北风的年际变化的响应。羽流前沿的位置对不同入口处的河流流量变化有不同的响应。大湖进水口河流量的增加似乎对四个进水口羽流前沿的位置影响最大,这使羽流前沿整体向东和向南移动;羽流锋所在位置的南沙或凤麻庙进口河道流量变化较局部且较弱;而横门进口的河水流量变化对羽流锋影响不大。羽流锋的位置也随着冬季东北风的年际变化而变化,风越强或越东风,羽流锋向西移动的越多,只有在北太平洋北部,羽流锋对风速的变化与风向的变化大不相同。

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