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首页> 外文期刊>Open Journal of Marine Science >Characteristics of Tides in the Red Sea Region, a Numerical Model Study
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Characteristics of Tides in the Red Sea Region, a Numerical Model Study

机译:红海地区潮汐特征的数值模型研究

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In this work, a two-dimensional numerical model based on Delft3D modelling system was setup to study the tidal characteristics of the Red Sea. Besides that, analyses of available observed time series of surface elevations were carried out. Sensitivity analyses of the numerical model were carried out by testing different model parameters aiming at selecting optimal settings. The model performance was evaluated against available time series of surface elevation observations. RMS error was found to vary from 0.03 to 0.1 meter, while the ADM values range from 0.02 to 0.05 meter. On the whole, the model is able to reproduce the tidal wave in the Red Sea, reflecting a consistent level of agreement with the observations and previous works. The model results suggest that the semidiurnal tidal waves play a major role in the region except in the central part of the Red Sea where amphidromic system exists. Major semidiurnal and diurnal tidal constituents were computed to generate co-charts and form factor. The results have revealed that the distribution of the co-charts of the major semidiurnal constituents M2, N2, and S2 show the existence of anticlockwise amphidromic system in the central part of the Red Sea at about 19.5°N, north of the Strait of Bab el Mandeb at 13.5°N and in the Gulf of Suez. The chart of the diurnal tidal constituent K1 showed a single counterclockwise system in the southern part of the Red Sea centred around 15.5°N. The form factor chart shows the appearance of diurnal character in the central part of the basin and the northern end of the strait. The hydrodynamics patterns under spring and neap tidal conditions were also analysed (during flood and ebb conditions). Model results showed that currents generally are weak and strongest currents are present in the strait of Bab el Mandeb and Gulf of Suez.
机译:在这项工作中,建立了一个基于Delft3D建模系统的二维数值模型来研究红海的潮汐特征。除此之外,对可用的观测到的地面高程时间序列进行了分析。数值模型的敏感性分析是通过测试旨在选择最佳设置的不同模型参数来进行的。针对可用的表面高程时间序列评估了模型性能。发现RMS误差在0.03到0.1米之间,而ADM值在0.02到0.05米之间。总体而言,该模型能够在红海中再现潮汐波,反映出与观测值和先前工作的一致水平。模型结果表明,半日潮汐在除存在两栖系统的红海中部以外的区域中起主要作用。计算主要的半日潮和日潮成分,以生成共同图表和形状因子。结果表明,主要半日组成部分M2,N2和S2的共同图表的分布表明,在巴布海峡以北19.5°N处,红海中部存在逆时针两栖系统。 El Mandeb位于13.5°N,位于苏伊士湾。昼夜潮气成分K1的图表在红海南部以15.5°N为中心显示了一个逆时针系统。外形图显示了盆地中部和海峡北端的昼夜特征。还分析了春季和潮汐潮汐条件下(在洪水和潮退条件下)的水动力模式。模型结果表明,在巴布·曼德布(Bab el Mandeb)和苏伊士湾(Gulf of Suez)海峡中,普遍存在弱电流,而最强电流存在。

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