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首页> 外文期刊>Ocean Dynamics >First- and higher-order dynamical controls on water exchanges between tidal basins and the open ocean. A case study for the East Frisian Wadden Sea
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First- and higher-order dynamical controls on water exchanges between tidal basins and the open ocean. A case study for the East Frisian Wadden Sea

机译:潮汐盆地和公海之间水交换的一阶和高阶动力学控制。东弗里斯兰省瓦登海为例

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摘要

Observational data, high-resolution numerical modelling results and a simple analytical theory are combined in this paper to demonstrate the dependence of the volume transports through tidal inlets on topographical or morphological parameters of a Wadden Sea system. The area of interest covers the East Frisian Wadden Sea and consists of seven weakly connected tidal basins. The observations include time series of tidal gauge data and surface currents measured at a pile station in the backbarrier basin of the island Langeoog, as well as several ADCP transects in the Accumer Ee tidal inlet. The numerical simulations are based on the 3-D primitive equation General Estuarine Transport Model (GETM) with a horizontal resolution of 200 m and terrain following vertical coordinates. The model is forced at its open boundaries with sea-level data from an operational model for the German Bight (German Hydrographic Office). The simple theoretical concepts presented illustrate the effect of topography (hypsome-try) in the tidal basins on the temporal variability of the exchange of water. This topographic control is effectuated through the bottom slope in the areas prone to drying and flooding. For our study area it takes about twice as long from slack water to maximum flood current than from slack water to maximum ebb current. The underlying physics of this signal modulation from a more or less harmonic forcing at the open-sea boundary and the quantification of the contributing physical processes are the major results of this paper. Estimates based simply on volume conservation are consistent with observations and results from numerical modelling, but they do not completely capture the actual non-linear tidal response. Our analysis shows that at least during part of the tidal cycle characteristic topographic parameters of the inlet/bay system have a major impact on the rate of exchange of waters between the Wadden Sea and the open ocean. This impact is especially strong during the transition between flood and ebb conditions. The possible morphodynamic responses are also addressed focusing on some common ("universal") topographic features in seven tidal basins.
机译:本文结合观测数据,高分辨率数值模拟结果和简单的分析理论,证明了通过潮汐进口的体积输运量对瓦登海系统的地形或形态学参数的依赖性。感兴趣的区域覆盖了东弗里斯兰瓦登海,由七个弱连接的潮汐盆地组成。观测结果包括在Langeoog岛后屏障盆地的桩工站测得的潮汐距量数据和表面电流的时间序列,以及Accumer Ee潮汐进口处的多个ADCP断面。数值模拟基于3-D基本方程通用河口运输模型(GETM),其水平分辨率为200 m,并且地形遵循垂直坐标。该模型在其开放边界上被强制使用了来自德国海岸线(德国水文局)的运行模型中的海平面数据。提出的简单理论概念说明了潮汐盆地中地形(催眠)对水交换的时间变化的影响。这种地形控制是通过容易发生干燥和洪水的区域的底部斜坡进行的。对于我们的研究区域,从松弛水到最大洪流的时间大约是从松弛水到最大退潮电流的两倍。该信号调制的基本物理原理是,在远洋边界处或多或少地产生了谐波强迫,并对物理过程的贡献进行了量化,这是本文的主要成果。仅基于体积守恒的估计值与数值模型的观察结果和结果一致,但是它们不能完全捕获实际的非线性潮汐响应。我们的分析表明,至少在潮汐周期的一部分期间,入口/海湾系统的特征地形参数对瓦登海和公海之间的水交换速率具有重大影响。在洪水和退潮条件之间的过渡期间,这种影响尤其强烈。还着重讨论了七个潮汐盆地中一些常见的(“通用”)地形特征,探讨了可能的形态动力学响应。

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