Modelling subsurface dynamics in the Black Sea

Gökay Karakaş, Alec James, Alaa Al-Barakati
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引用次数: 5

Abstract

Dependency of major hydrophysical/chemical features of highly stratified basins on density surfaces in the vertical makes isopycnic models an attractive tool for simulating the dynamics of marginal marine environments such as the Black Sea because of the ability of these models to restrict vertical transport to some desirable degree. In the present work the seasonal variations of the subsurface dynamics of the Black Sea are investigated using an isopycnic model. Particular attention is given to the interfaces of the Cold intermediate layer and Suboxic layer and finally, the deep layer circulation in the basin is studied. It appears that although the depth range of the base of the Cold intermediate layer and the lower Soboxic layer interface do not change seasonally, their horizontal distribution is defined by the upper layer dynamics of the basin. Cyclonic surface circulation diminishes with increasing depth and the deep layer circulation is characterised by an anti-cyclonic rim current driven by density gradients created from river runoff and the influx of Mediterranean water.

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黑海地下动力学模拟
高度分层盆地的主要水物理/化学特征在垂直方向上依赖于密度面,这使得等流模式成为模拟黑海等边缘海洋环境动力学的一种有吸引力的工具,因为这些模式能够在一定程度上限制垂直输送。在本工作中,研究黑海地下动力学的季节变化,采用等流模式。重点研究了冷中间层与亚氧层的界面,并对盆地深层环流进行了研究。虽然冷中间层底部和下sobox层界面的深度范围不随季节变化,但它们的水平分布是由盆地上层动力学决定的。气旋式地表环流随着深度的增加而减弱,而深层环流的特征是由河流径流和地中海水流入产生的密度梯度驱动的反气旋边缘流。
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