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Vertical Structure in the Marine Atmospheric Boundary Layer and its Implication for the Inertial Dissipation Method

机译:海洋大气边界层的垂直结构及其对惯性耗散方法的启示

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The structure of the marine atmospheric boundarylayer and the validity ofMonin–Obukhov similarity theory over the seahave been investigated using longterm measurements. Three levels of turbulencemeasurements (at 10 m, 18 mand 26 m) at Östergarnsholm in themiddle of the Baltic Sea have beenanalysed. The results show that turbulentparameters have a strong dependenceon the actual height due to wave influence.The wind profile and thus thenormalised wind gradient are very sensitiveto wave state. The lower part of theboundary layer can be divided into three heightlayers, a wave influenced layerclose to the surface, a transition layer andan undisturbed ‘ordinary’ surfacelayer; the depth of the layers is determinedby the wave state. This heightstructure can, however, not be found for thenormalised dissipation, which is onlya function of the stability, except duringpronounced swell where the actualheight also has to be accounted for. Theresults have implications for the heightvariation of the turbulent kinetic energy(TKE) budget. Thus, the imbalancebetween production and dissipation willalso vary with height according to thevariation of wave state. This, in turn,will of course have strong implicationsfor the inertial dissipation method, inwhich a parameterisation of the TKEbudget is used.
机译:使用长期测量方法研究了海洋大气边界层的结构以及Monin–Obukhov相似理论在整个海洋上的有效性。在波罗的海中部的Östergarnsholm,进行了三个水平的湍流测量(10 m,18 mand 26 m)。结果表明,由于波浪的影响,湍流参数与实际高度高度相关。风廓线和归一化风梯度对波浪状态非常敏感。边界层的下部可分为三个高度层:靠近表面的波影响层,过渡层和未受干扰的“普通”表面层。层的深度由波浪状态决定。但是,找不到这种高度结构用于归一化耗散,这仅是稳定性的函数,除非在发音隆起期间也必须考虑实际高度。结果对湍动能(TKE)预算的高度变化有影响。因此,产生和耗散之间的不平衡也将根据波状态的变化而随高度而变化。反过来,这当然会对惯性耗散方法产生重大影响,在惯性耗散方法中,将使用TKEbudget的参数化。

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