达达尼尔海峡的水交换:从同步时间尺度到年际时间尺度的变化

IF 2.2 3区 地球科学 Q2 OCEANOGRAPHY Ocean Dynamics Pub Date : 2024-02-24 DOI:10.1007/s10236-024-01604-z
Şehriban Saçu, Olgay Şen, Tarkan Erdik, İzzet Öztürk, Emil V. Stanev
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引用次数: 0

摘要

马尔马拉海与爱琴海之间的双向质量交换是黑海与地中海之间重要水动力联系的一部分。在本研究中,我们基于三维数值模型模拟,考察了达达尼尔海峡在现实大气胁迫下 11 年的交换情况。模型包括黑海、马尔马拉海和爱琴海的一部分,以包括海盆动力学的远距离影响。与早期观测结果相比,该模型成功地再现了单层、双层和三层流动结构的主要特征。研究发现,该海峡仅在奈良隘口附近受到一个控制的次最大交换。根据长期模拟结果,大多数变化发生在同步时间尺度上,而风压在这些变化中起主导作用。交换流量的季节和年际变化相对较小,与黑海的淡水输入量关系密切。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Water exchange in the Dardanelles: variations on synoptic to interannual time scales

The bidirectional mass exchange between the Marmara Sea and the Aegean Sea provides one part of the critical hydrodynamic links between the Black Sea and the Mediterranean Sea. In this study, we examined exchange in the Dardanelles based on a 3-D numerical model simulation covering an 11-year period under realistic atmospheric forcing. The model includes the Black Sea, the Marmara Sea, and a part of the Aegean Sea to include the remote effects of basin dynamics. The main features as one-, two-, and three-layered flow structures are successfully reproduced by the model in comparison to earlier observations. It is found that the strait is subject to submaximal exchange by only one control near the Nara Pass. According to long-term modeling results, most variability occurs on synoptic time scales, and wind stress has a dominant role in those variations. The seasonal and interannual variability of exchange flow is relatively low and displays a close relationship with freshwater input to the Black Sea.

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来源期刊
Ocean Dynamics
Ocean Dynamics 地学-海洋学
CiteScore
5.40
自引率
0.00%
发文量
37
审稿时长
6-12 weeks
期刊介绍: Ocean Dynamics is an international journal that aims to publish high-quality peer-reviewed articles in the following areas of research: Theoretical oceanography (new theoretical concepts that further system understanding with a strong view to applicability for operational or monitoring purposes); Computational oceanography (all aspects of ocean modeling and data analysis); Observational oceanography (new techniques or systematic approaches in measuring oceanic variables, including all aspects of monitoring the state of the ocean); Articles with an interdisciplinary character that encompass research in the fields of biological, chemical and physical oceanography are especially encouraged.
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