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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Characteristics of the East Sea (Japan Sea) circulation depending on surface heat flux and its effect on branching of the Tsushima Warm Current
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Characteristics of the East Sea (Japan Sea) circulation depending on surface heat flux and its effect on branching of the Tsushima Warm Current

机译:基于表面热通量的东海(日本海洋)循环的特点及其对Tsushima暖流分支的影响

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摘要

The effects of the surface heat flux and wind forcing on the East Sea (Japan Sea) circulation and the branching of the Tsushima Warm Current were investigated using a three-dimensional circulation model (RIAMOM). For the numerical experiments with surface heat flux, regardless of wind forcing, the Tsushima Warm Current, the Nearshore Branch, and the East Korea Warm Current were well simulated in the southern part of the East Sea. Furthermore, the cold water mass of 1-2 degrees C was formed at a depth of 200-250 m because of the convection of the upper layer and ventilation that actively occurs in the northern part of the East Sea. However, in the experiments without surface heat flux, the East Korea Warm Current was not simulated. The Tsushima Warm Current through the Korea/Tsushima Strait flows mostly northeastward along the Japanese coast as the Nearshore Branch. Moreover, the cold water mass was not formed at the northern part of the East Sea, thus the 1-2 degrees C cold water was distributed below 300-400 m depth with weak ventilation. The upper layer in the southern part of the East Sea, ranging from the surface to the bottom of the pycnocline, was thicker than the case of the surface heat flux forcing. Since the Tsushima Warm Current flowing through the Korea/Tsushima Strait is dominantly affected by the continental slope of the Japanese coast, the current does not lead to formation of the East Korea Warm Current as a western boundary current. If the effect of the continental slope of the Japanese coast is not applied, the Tsushima Warm Current flows only along the Korean coast as a western boundary current. The numerical experiments reveal that the surface heat flux serves as a critical external forcing which controls the topographic and planetary beta effects on the upper layer circulation in the southern part of the East Sea.
机译:采用三维循环模型(RIAMOM)研究了地表热通量和风强迫的效果和对东海循环的循环和Tsushima暖流的分支。对于地表热通量的数值实验,无论风强制,Tsushima暖流,近岸分支,东韩国温暖的电流在东海南部都有很好的模拟。此外,由于上层和通风的对流,在200-250米的深度形成的深度为200-250μm的冷水质量。然而,在没有表面热通量的实验中,未模拟东韩国暖电流。 Tsushima通过韩国/ Tsushima海峡的热潮主要沿着日本海岸向东北部流动,作为近岸分支。此外,冷水质量未形成在东海的北部,因此1-2摄氏度的冷水分布在300-400米深度以下,随着通风弱。东海南部的上层,从斑虫细胞底部到底部的表面,比表面热通量强制厚度厚。由于Tsushima热潮流经韩国/藏岛海峡,受日本海岸大陆坡的占主导地位,目前不会导致东朝鲜温控作为西部边界电流。如果未应用日本海岸的大陆坡的效果,则Tsushima暖流量仅沿着韩国海岸流动作为西部边界电流。数值实验表明,表面热通量用作临界外部强制,其控制东海南部的上层循环的地形和行星β作效应。

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