...
首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >A three-dimensional mixed finite-difference Galerkin function model for the oceanic circulation in the Yellow Sea and the East China Sea in the presence of M-2 tide
【24h】

A three-dimensional mixed finite-difference Galerkin function model for the oceanic circulation in the Yellow Sea and the East China Sea in the presence of M-2 tide

机译:M-2潮存在下黄海和东海海洋环流的三维混合有限差分Galerkin函数模型

获取原文
获取原文并翻译 | 示例
           

摘要

This paper, as a sequel to Lee et al. (Continental Shelf Research 20 (2000) 863) describes the simulation of the oceanic current in the Yellow Sea (YS) and the East China Sea (ECS) with forcings of M-2 tide as well as oceanic flows prescribed at the open boundary. The model is three dimensional and barotropic, and uses a finite-difference approximation in the horizontal plane and function expansions in the vertical direction. The bottom stress is represented by the conventional quadratic friction law and the vertical eddy viscosity takes a flow-related form. A radiation condition is employed along the open boundaries to handle the M-2 tide and oceanic flows simultaneously. From a series of numerical calculations with M-2 tide forcing only, the bottom friction coefficient, 0.0035, has been found as an optimum value with which RMS errors (amplitude, phase lag) are calculated as 16.4cm, 19.5degrees. Calculations have also been carried out to investigate the effects of using an empirical function expansion for the current profiles below the main stream of Kuroshio. Despite the bias of the tidal propagation and the associated flux, the tidal chart has been calculated with tolerable accuracy. The model calculation confirms the results of Exp. 4 of Lee et. al. (Continental Shelf Research 20 (2000) 863), in that the tide-enhanced bottom friction effectively blocks the penetration of northwestward flow into the YS known as the Yellow Sea Warm Current (YSWC). The presence of small gyres, however, complicates the circulation near the southern YS and west of Cheju Island and tidal residual currents omnipresent at the shallow sea region off the Chinese coast between 32degreesN and 34.5degreesN also contribute to the suppression of the formation of the YSWC. The distribution of the sea surface elevation averaged over the M-2 tidal period is qualitatively in good agreement with that of Yanagi et al. (Continental Shelf Research 17 (1997) 655), calculated from the TOPEX altimetric data. Calculation with an inflow of 25.1 Sv through open boundaries on both sides of Taiwan shows that 1.15Sv goes through Korea/Tsushima Strait, 0.36Sv through the north of Tokara Strait (between Kyushu and Yakushima Island), 20.95 Sv through Tokara Strait and 2.77 Sv through open boundaries along the Ryukyu Islands. Calculations with fortnightly variation in M-2 open boundary forcings show that the oceanic circulation as well as tidal residuals vary significantly in the southern Yellow Sea; penetration of oceanic flows into the Yellow Sea occurs deeper at the neap tide than at the spring tide. The seasonal variation in the volume transport of the oceanic inflows/ outflows without baroclinic effects has little effect on the exchange between the YS and the ECS. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 41]
机译:本文是Lee等人的续集。 (Continental Shelf Research 20(2000)863)描述了黄海(YS)和东海(ECS)中洋流的模拟,其中强迫有M-2潮以及在开放边界规定的洋流。该模型是三维正压模型,在水平面上使用有限差分近似,在垂直方向上使用函数展开。底部应力由常规的二次摩擦定律表示,垂直涡流粘度采用与流量相关的形式。沿开放边界采用辐射条件以同时处理M-2潮汐和海洋流。从仅使用M-2潮汐力进行的一系列数值计算中,已发现底部摩擦系数0.0035作为最佳值,根据该最佳值,RMS误差(幅度,相位滞后)被计算为16.4cm,19.5度。还进行了计算以调查对黑潮主流以下的当前剖面使用经验函数展开的影响。尽管潮汐传播和相关通量存在偏差,但潮汐图的计算精度尚可忍受。模型计算确认了Exp的结果。李等人的4。等(Continental Shelf Research 20(2000)863),这是因为潮汐增强的底部摩擦有效地阻止了西北流向YS的渗透,即黄海暖流(YSWC)。然而,小涡旋的存在使YS南部和济州岛以西的环流复杂化,在中国沿海32°N至34.5°N之间的浅海区域无处不在的潮汐剩余流也有助于抑制YSWC的形成。从质量上讲,在M-2潮期平均海平面分布与Yanagi等人的定性良好。 (Continental Shelf Research 17(1997)655),是根据TOPEX高空数据计算得出的。通过台湾两边的开放边界流入25.1 Sv的计算表明,有1.15Sv穿过朝鲜/对岛海峡,0.36Sv穿过了Tokara海峡(九州和屋久岛之间),20.95 Sv穿过了Tokara海峡,而2.77 Sv穿越琉球群岛的开放边界。 M-2开放边界强迫每两周变化一次的计算表明,黄海南部的海洋环流和潮汐残差变化很大。在潮汐潮中,洋流向黄海的渗透要比在春季潮汐时更深。没有斜压影响的海洋流入/流出量运输的季节性变化对YS和ECS之间的交换影响很小。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:41]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号