Abyssal circulation model of the Philippine Sea

Masahisa Kubota , Koji Ono
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引用次数: 10

Abstract

The abyssal circulation in the Philippine Sea is investigated by use of a linear reduced-gravity model. It is assumed that the deep water is supplied from the main western North Pacific into the Philippine Sea through the Yap-Mariana Junction, as suggested by observational results. Two different numerical experiments are carried out, with and without bottom topography. The results of the flat-bottom model show that a strong abyssal boundary current is formed along the western and northern boundaries. However, a stagnation point cannot be found in this case. Although the results from the experiment that includes topographical effects display a complicated pattern, abyssal water flowing into the Philippine Sea mainly appears to move northward in the West Mariana Basin. Also, the Model results suggest that the abyssal circulation is more active in the eastern Philippine Sea (the Shikoku and West Mariana Basins) than in the western Philippine Sea (the Philippine Basin). It is remarkable that not only the circulation pattern but also the relative strenghts of the current velocity from the present model are fairly consistent with the observational results from moored current meters and hydrographic data, in spite of the simplicity of the model.

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菲律宾海深海环流模式
用线性减重模式研究了菲律宾海的深海环流。根据观测结果,假定深水是通过雅浦-马里亚纳汇合处从北太平洋西部主区进入菲律宾海的。进行了有底地形和无底地形两种不同的数值实验。平底模式的结果表明,沿西部和北部边界形成了强烈的深海边界流。然而,在这种情况下,不能找到一个停滞点。虽然包括地形影响在内的实验结果显示出复杂的模式,但流入菲律宾海的深海水主要是在西马里亚纳盆地向北移动。此外,模式结果表明,菲律宾海东部(四国和西马里亚纳盆地)的深海环流比菲律宾海西部(菲律宾盆地)更为活跃。值得注意的是,尽管该模式简单,但不仅环流型,而且流速的相对强度也与系泊海流仪和水文资料的观测结果相当一致。
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