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Black Sea thermohaline properties: Long‐term trends and variations

机译:黑海热盐特性:长期趋势和变化

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摘要

The current knowledge about spatial and temporal dynamics of the Black Sea's thermohaline structure is incomplete because of missing data and sparse distribution of existing measurements in space and time. This study presents 56 year continuous simulations of the Black Sea's hydrodynamics using the 3D General Estuarine Transport Model (GETM), without incorporating any relaxation toward climatological or observational data fields. This property of the model allows us to estimate independent temporal trends, in addition to resolving the spatial structure. The simulations suggest that the intermediate layer temperature is characterized by a weak positive trend (warming), whereas the surface temperature does not show a clear linear trend. Different salinity trends have been established at the surface (negative), upper (weaker negative) and main halocline (positive). Three distinct dynamic periods are identified (1960–1970, 1970–1995, 1995–2015), which exhibit pronounced changes in the Black Sea's thermohaline properties and basin circulation. Strengthening of the main cyclonic circulation, accompanied by intensification of the mesoscale anticyclonic eddy formation is found. Both events strongly affect the sea surface salinity but contribute in opposing directions. Specifically, strong composite large‐scale circulation leads to an increase in sea surface salinity, while enhanced formation of mesoscale anticyclones decreases it. Salinity evolution with time is thus the result of the competition of these two opposing yet interdependent processes.
机译:由于缺少数据以及现有测量值在空间和时间上的稀疏分布,有关黑海热盐结构的时空动力学的当前知识尚不完整。这项研究使用3D通用河口运输模型(GETM)进行了56年的黑海流体动力学连续模拟,而没有对气候或观测数据领域进行任何放松。该模型的这一特性除了解析空间结构之外,还使我们能够估计独立的时间趋势。模拟表明,中间层温度的特征是弱的正趋势(变暖),而表面温度没有明显的线性趋势。在表面(负),上部(弱负)和主卤代烷(正)已建立了不同的盐度趋势。确定了三个不同的动态时期(1960-1970年,1970-1995年,1995-2015年),这些时期表现出黑海热盐特性和盆地环流的明显变化。发现主要气旋循环的加强,伴随着中尺度反气旋涡形成的增强。两种事件都强烈影响海表盐度,但在相反的方向起作用。特别是,强大的复合大规模环流导致海表盐度增加,而中尺度反旋风形成的增强会使其降低。因此,盐分随时间的演变是这两个相对而又相互依存的过程竞争的结果。

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