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Frictional interactions between tidal constituents in tide-dominated estuaries

机译:潮汐主导的河口中潮汐成分之间的摩擦相互作用

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When different tidal constituents propagate along an estuary, they interact because of the presence of nonlinear terms in the hydrodynamic equations. In particular, due to the quadratic velocity in the friction term, the effective friction experienced by both the predominant and the minor tidal constituents is enhanced. We explore the underlying mechanism with a simple conceptual model by utilizing Chebyshev polynomials, enabling the effect of the velocities of the tidal constituents to be summed in the friction term and, hence, the linearized hydrodynamic equations to be solved analytically in a closed form. An analytical model is adopted for each single tidal constituent with a correction factor to adjust the linearized friction term, accounting for the mutual interactions between the different tidal constituents by means of an iterative procedure. The proposed method is applied to the Guadiana (southern Portugal–Spain border) and Guadalquivir (Spain) estuaries for different tidal constituents (Msub2/sub, Ssub2/sub, Nsub2/sub, Osub1/sub, Ksub1/sub) imposed independently at the estuary mouth. The analytical results appear to agree very well with the observed tidal amplitudes and phases of the different tidal constituents. The proposed method could be applicable to other alluvial estuaries with a small tidal amplitude-to-depth ratio and negligible river discharge.
机译:当不同的潮汐成分沿河口传播时,由于流体动力学方程中存在非线性项,它们会相互作用。特别地,由于摩擦项中的平方速度,主要和次要潮汐成分所经历的有效摩擦均得到增强。我们通过利用Chebyshev多项式用简单的概念模型探索潜在的机理,从而使潮汐成分的速度影响可以在摩擦项中求和,因此可以线性化地以线性形式求解流体动力学方程。为每个潮汐组成部分采用一个分析模型,该模型具有一个校正因子以调整线性摩擦项,并通过迭代程序解决了不同潮汐组成部分之间的相互影响。拟议的方法适用于瓜迪亚纳(葡萄牙南部-西班牙边界)和瓜达尔基维尔河(西班牙)河口,用于不同的潮汐成分(M 2 ,S 2 ,N 2 ,O 1 ,K 1 )分别施加在河口处。分析结果似乎与观察到的不同潮汐成分的潮汐振幅和相位非常吻合。所提出的方法可以适用于潮汐波深比较小且河流量可忽略不计的其他冲积河口。

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