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A prescriptive bulk model of periodic estuarine stratification driven by density currents and tidal straining

机译:由密度流和潮汐应变驱动的周期性河口分层的规范性主体模型

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A prescriptive bulk model of periodic estuarine stratification is developed using potential energy anomaly arguments and a bulk vertical eddy viscosity model derived a priori. In the model, vertical mixing is dominated by tidal stirring except around slack water when other weaker 'residual' mixing mechanisms, such as due to the shear induced by the gravitational circulation and wind stirring, dominate. The model under certain conditions exhibits bi-stable solutions corresponding to the well-mixed and stratified states found on either side of a tidal mixing front. In the transition from spring and neap tidal cycles, a stratification state change can occur depending on the strength of residual mixing. The model can account for the phase lag observed between changes in tidal stirring and the onset and persistence of stratification, and leads to new theoretical criteria for the position of tidal mixing fronts.
机译:利用势能异常参数和先验推导的整体垂直涡流粘度模型建立了周期性河口分层的规范整体模型。在该模型中,垂直混合主要由潮汐搅拌引起,除了在松弛的水周围,而其他较弱的“残余”混合机理(如重力循环和风搅拌引起的剪切)则占主导地位。在某些条件下,该模型表现出双稳态解,对应于在潮汐混合前沿两侧发现的充分混合和分层的状态。在春季和春季潮汐周期的过渡过程中,取决于残留混合的强度,可能会发生分层状态变化。该模型可以解释潮汐搅动变化与分层开始和持续存在之间观察到的相位滞后,并为潮汐混合前沿的位置提出新的理论标准。

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