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Numerical analysis of stratification and destratification processes in a tidally energetic inlet with an ebb tidal delta

机译:潮汐三角洲潮汐高能进水口分层和分层过程的数值分析

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Stratification and destratification processes in a tidally energetic, weakly stratified inlet in the Wadden Sea (south eastern North Sea) are investigated in this modeling study. Observations of current velocity and vertical density structure show strain-induced periodic stratification for the southern shoal of the tidal channel. In contrast to this, in the nearby central region of the channel, increased stratification is already observed directly after full flood. To investigate the processes leading to this different behavior, a nested model system using GETM is set up and successfully validated against field data. The simulated density development along a cross section that includes both stations shows that cross-channel stratification is strongly increasing during flood, such that available potential energy is released in the deeper part of the channel during flood. An analysis of the potential energy anomaly budget confirms that the early onset of vertical stratification during flood at the deeper station is mainly controlled by the stratifying cross-channel straining of the density field. In contrast to this, in the shallow part of the channel, the relatively weak crosschannel straining is balanced by along-channel straining and vertical mixing. An idealized analytical model confirms the following hypothesis: The laterally convergent flood current advecting laterally stratified water masses from the shallow and wide ebb tidal delta to the deep and narrow tidal channel has the tendency to substantially increase cross-channel density gradients in the tidal channel. This process leads to stratification during flood.
机译:在此建模研究中,对瓦登海(北东南部)潮汐充满活力的弱分层入口中的分层和分层过程进行了研究。对当前速度和垂直密度结构的观测表明,潮汐河道南部浅滩的应变引起的周期性分层。与此相反,在河道附近的中部地区,已经在完全洪水后立即观察到分层增加。为了调查导致这种不同行为的过程,建立了使用GETM的嵌套模型系统,并针对现场数据成功进行了验证。沿包括两个站的横截面的模拟密度发展表明,洪水期间跨河道的分层急剧增加,因此洪水期间通道的较深部分释放了可用的势能。对潜在能量异常预算的分析证实,在较深站的洪水期间,垂直分层的早期发作主要由密度场的分层跨通道应变控制。与此相反,在通道的较浅部分,较弱的跨通道应变通过沿通道应变和垂直混合来平衡。理想化的分析模型证实了以下假设:横向收敛的洪流将横向分层的水团从浅而宽的潮汐三角洲流向深而窄的潮汐河道,具有明显增加潮汐河道中跨河道密度梯度的趋势。此过程导致洪水期间分层。

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