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Mercury dynamic simulation of Minamata Bay by using a three-dimensional numerical model

机译:基于三维数值模型的水am湾汞动力学模拟

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摘要

Residual mercury dynamic has been the research emphasis since mercury contamination was publicly recognized in Minamata Bay. Simulation of mercury distribution and transport pattern is performed based on an integrated three-dimensional numerical model. Simulated dissolved total mercury and dissolved methyl-mercury show acceptable agreements with measurements. Deviation occurs during the simulation of particulate mercury at bottom layer and is probably caused by the existence of coarser sediments which could barely suspend to upper layers. Mercury transport pattern in larger Yatsushiro Sea is simulated and analyzed with mercury source from Minamata Bay. Study results suggest that substantial mercury deposition happened during preliminary stage of simulation. Due to the effect of current outside bay mouth, transport of mercury at middle and bottom layers has the trend to north, while west transportation of mercury output is presumed to happen during slack tide. Surface mercury transport is sensible to wind effect, moreover, higher magnitude of flow velocity causes different transport tendency compared with lower layers.
机译:自从水Min湾公开承认汞污染以来,残留汞动态一直是研究的重点。基于集成的三维数值模型对汞的分布和迁移模式进行模拟。模拟溶解的总汞和溶解的甲基汞显示出可接受的测量结果。在底层颗粒状汞的模拟过程中会发生偏差,这可能是由于存在较粗糙的沉积物而导致的,这些沉积物几乎无法悬浮到上层。利用水am湾的汞源对大四代海中的汞迁移模式进行了模拟和分析。研究结果表明,大量的汞沉积发生在模拟的初始阶段。由于当前湾口外电流的影响,中下层的汞运输呈北移的趋势,而汞输出量的西移被认为是在潮潮时期发生的。表面汞的运输很容易受到风的影响,此外,较高的流速导致与较低层相比不同的运输趋势。

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