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Hydrodynamic response in a microtidal and shallow bay under energetic wind and seiche episodes

机译:在充满活力的风和六集的微潮和浅海湾中的水动力响应

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摘要

In this contribution we investigate the hydrodynamic response in a micro-tidal and shallow semi-enclosed domain. We chose a set of observations which include currents, hydrography and meteorological data obtained in Alfacs Bay (NW Mediterranean Sea). Short-term response to energetic wind events was found in the hydrography and water velocity observations, sometimes inverting the estuarine circulation or developing one-layered flow. In comparison to previous investigations in Alfacs Bay, we observed that water current variability, and also maximum velocities, were directly related to the development of surface standing waves (i.e. seiches). Mixing mechanisms versus buoyancy sources are studied through potential energy anomaly equation, proving the leading freshwater contribution to stratification, enhanced by heat fluxes in summer. On the other hand, mixing is directly related to winds, mainly in winter and early spring when both buoyancy forces are lower. We also study turbulent bottom mixing by seiches through observations, dimensionless relations and numerical modeling. Seiche induced mixing is suggested as an eventual mechanism that may break the stratification within the Bay under special circumstances.
机译:在这项贡献中,我们研究了微潮和浅半封闭域中的水动力响应。我们选择了一组观测资料,其中包括在Alfacs湾(西北地中海)获得的洋流,水文学和气象数据。在水文和水速观测中发现了对高能风事件的短期响应,有时使河口环流反转或形成单层流。与先前在Alfacs湾进行的调查相比,我们观察到水流的变化以及最大速度与地表驻波(即seiches)的发展直接相关。通过势能异常方程研究了混合机制与浮力源之间的关系,证明了夏季淡水对分层的主要贡献,并通过夏季的热通量来增强。另一方面,混合与风直接相关,主要在冬季和早春,这两个浮力都较低。我们还通过观测,无量纲关系和数值模型研究了塞奇斯的湍流底部混合。 Seiche诱导的混合被认为是一种可能的机制,在特殊情况下可能破坏海湾内的分层。

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