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The influence of Black Sea Water inflow and its synoptic time-scale variability in the North Aegean Sea hydrodynamics

机译:黑海水流入及其天气时标变化对北爱琴海水动力的影响

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摘要

The exchange water fluxes between the Black Sea and the North Aegean Sea through the Dardanelles Strait constitute an essential factor for the general circulation of the region. The Black Sea Water (BSW) inflow to the Aegean plays an important role in the hydrography and circulation of the basin and can affect the North Aegean deep water formation processes. Numerical experiments evaluating the influence of the time-scale variability (synoptic and seasonal) and the seasonality (period of maximum/minimum) of the Black Sea Water inflow on the dynamics of the North Aegean basin were performed. The experiments were carried out for the period from August 2008 to October 2009, using observed upper and lower-layer fluxes from the Dardanelles Strait, high-resolution atmospheric forcing, and boundary conditions derived from an operational system (ALERMO). The large-scale spatial patterns of the circulation and the seasonal variability of the North Aegean circulation show that dynamics of the basin can effectively absorb most of the Black Sea Water inflow variability. The overall cyclonic circulation of the North Aegean Sea and the predominant cyclonic and anti-cyclonic features are robust and are little affected by the different lateral fluxes. However, differences in the seasonality of the BSW inflow have an important impact in the North Aegean water column structure, while the synoptic variability observed in the Black Sea Water inflow affects the kinetic energy of the basin and the pathway of the Black Sea Water plume.
机译:黑海与北爱琴海之间通过达达尼尔海峡的交换水通量是该地区普遍环流的重要因素。流入爱琴海的黑海水(BSW)在流域的水文和循环中起着重要作用,并且可以影响北爱琴海的深水形成过程。进行了数值实验,评估了黑海海水流入的时标变化(天气和季节)和季节(最大/最小周期)对北爱琴海盆地动力学的影响。实验是在2008年8月至2009年10月进行的,使用的是达达尼尔海峡海峡的上层和下层通量,高分辨率大气强迫和来自操作系统的边界条件(ALERMO)。环流的大规模空间格局和北爱琴海环流的季节变化表明,盆地的动力学可以有效地吸收黑海大部分的水流入变化。北爱琴海的整体气旋环流和主要的气旋和反气旋特征是健壮的,几乎不受不同侧向通量的影响。但是,BSW流入季节的差异对北爱琴海水柱结构具有重要影响,而黑海水流入中观测到的天气变化会影响盆地的动能和黑海水羽流的路径。

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