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Numerical Modeling on the Transfer and Diffusion of Seawater Salinity During Ice Period in the Bohai Sea

机译:渤海冰水期海水盐度转移与扩散的数值模型

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The extensive exploitation of sea ice often results in increase and accumulation of salinity in the seawater around the exploiting spot. Based on the ECOMSED model, this paper builds up a salinity diffusion model which is driven by three dynamical situations in order to quantitatively analyze the transfer and diffusion situation of salinity which is enhanced during ice period in the Bohai Sea. Results indicate that wind plays a more important role in the transfer and diffusion of salinity than tides do, and the effect of both tides and local wind make together is between what each of the two influential factors does respectively. Among the three bays in the Bohai Sea, the water exchange is the strongest in the Laizhou Bay, and the water exchange in the Bohai Bay is weaker than that in the Laizhou Bay but stronger than that in the Liaodong Bay. The water in the central area of the Bohai Sea plays an important role in restraining the salinity in the ice region through exchanging with the high salinity water of the three bays. Besides, there is a net salt flux to the outer sea through the Bohai Sea strait.
机译:海冰的广泛开发往往导致海水中的盐度增加和积累在剥削点。基于ECOMSED模型,本文建立了一个盐度扩散模型,该模型由三种动态情况驱动,以定量分析盐度在渤海冰期间增强的转移和扩散情况。结果表明,风在盐度的转移和扩散中发挥着更重要的作用,而不是潮汐,并且潮汐和局部风在一起的效果分别在两个影响因素中的每个影响因素之间。在渤海的三个海湾中,水交换是莱州湾最强的,渤海湾的水交换比莱州湾更弱,而是比辽东湾更强大。渤海中央地区的水在抑制了冰区中的盐度,通过与三个海湾的高盐度水交换来抑制冰区的盐度。此外,通过渤海海峡对外海有净盐通量。

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