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Numerical Modeling of the Influence of Exchange through the Bosporus and Dardanelles Straits on the Hydrophysical Fields of the Marmara Sea

机译:博斯普鲁斯海峡和达达尼尔海峡海峡交换对马尔马拉海水物理场影响的数值模拟

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摘要

A long-term (18 years) prognostic experiment on the formation of the Marmara Sea hydrody-namic structure driven by the exchange through straits with zero atmospheric forcing is carried out using a numerical nonlinear circulation model. The seasonal variability is taken into account by specifying the water temperature in the Bosporus. It is shown that the mutual adaptation of hydrophysical fields and their adjustment to the physical and geographical conditions of the sea are caused by rapid (tens of days) and slow (several tens of years) adjustment mechanisms. An S-shaped jet current directed from the Bosporus Strait to the Dardanelles is formed in the upper 20-m layer. A cyclonic eddy is periodically formed near the northern boundary of the Marmara Sea. An anticyclonic pattern is well defined in the central part of the sea. In deeper layers there is an abyssal jet current formed by the inflow of the high-density Aegean water to the Marmara Sea. These features of the Marmara Sea circulation are confirmed by observational data.
机译:使用数值非线性环流模型进行了长期(18年)预后实验,该预后实验是通过海峡两岸交换,强迫零大气压力驱动的马尔马拉海水动力-自然结构的形成。通过指定博斯普鲁斯海峡中的水温来考虑季节变化。结果表明,水文物理场的相互适应及其对海洋物理和地理条件的调节是由快速(数十天)和缓慢(几十年)调节机制引起的。从博斯普鲁斯海峡直达达达尼​​尔海峡的S形喷射流形成在上部20米层中。在马尔马拉海的北边界附近周期性地形成旋风涡。反气旋模式在海洋的中心部分定义明确。在更深的层中,由于高密度的爱琴海水流入马尔马拉海而形成深海喷流。观测数据证实了马尔马拉海环流的这些特征。

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