首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Upwelling and surface cold patches in the Yellow Sea in summer: Effects of tidal mixing on the vertical circulation
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Upwelling and surface cold patches in the Yellow Sea in summer: Effects of tidal mixing on the vertical circulation

机译:夏季黄海的上升流和地表寒冷斑块:潮汐混合对垂直循环的影响

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A three-dimensional, prognostic, wave-tide-circulation coupled numerical model is developed to study the effects of tidal mixing on the summertime vertical circulation in the Yellow Sea (YS). The distribution and mechanisms of upwelling are investigated by numerical means. Validated by historical tide gauge data, satellite sea surface temperature (SST) data, and cruise observation data, the model shows satisfactory performances in reproducing the dominant tidal system and three-dimensional sea temperature structure. Model results suggest that strong tidal mixing plays an important role in the formation of the vertical circulation in the YS. The Yellow Sea Cold Water Mass (YSCWM) is fringed by typical tidal mixing fronts (TMFs), which separate the cold, stratified water at the offshore side from the warm, well-mixed, shallow water at the other side. Considerable baroclinic gradient across the TMF makes the frontal zone the spot where the most active vertical circulation occurs; a secondary circulation is triggered with a distinct upwelling branch occurring mainly on the mixed side of the front. The numerical model produces systematic upwelling belts surrounding the YSCWM, and the upwelling is essentially induced by the TMF over sloping topography. The relative importance of tidal mixing and wind forcing for upwelling is further examined in numerical experiments. The southerly wind enhances the upwelling off the western coasts, but its overall influences in the whole YS are less important than tidal mixing. As shown by both satellite data and numerical modeling, the summertime SST field in the YS is featured by the stable existence of several site-selective surface cold patches (SCPs), most of which scatter in the waters off convex coastlines. One of the SCPs is found off Subei Bank, and the others are located off the eastern tip of Shandong Peninsula and off the three tips of Korean Peninsula. Two processes give rise to the SCP: on the one hand, TMF-induced upwelling supplies cold water from the deep layer; on the other hand, tidal mixing itself can stir the bottom water upward and homogenize the water column vertically. In the waters around the tips of peninsula in the YS, the tidal currents are extraordinarily strong, which provides a possible explanation for the site-selectivity of the SCPs. (C) 2009 Elsevier Ltd. All rights reserved.
机译:建立了一个三维预测波涛环流耦合数值模型,以研究潮汐混合对黄海夏季垂直环流的影响。用数值方法研究了上升流的分布和机理。经历史潮汐仪数据,卫星海面温度(SST)数据和巡航观测数据验证,该模型在再现主要潮汐系统和三维海温结构方面显示出令人满意的性能。模型结果表明,强烈的潮汐混合在YS垂直循环的形成中起着重要作用。黄海冷水团(YSCWM)由典型的潮汐混合前沿(TMF)包围,这些前沿将离岸一侧的冷分层水与另一侧的温暖,充分混合的浅水区分开。整个TMF的斜压梯度很大,使额叶成为最活跃的垂直循环发生的部位。次生环流由明显的上升支流触发,主要出现在前缘的混合侧。数值模型在YSCWM周围产生了系统的上升流带,而上升流基本上是由TMF在倾斜地形上引起的。数值实验进一步检验了潮汐混合和强迫作用对上升流的相对重要性。南风增强了西海岸的上升流,但是在整个YS上,其总体影响并不比潮汐混合重要。正如卫星数据和数值模拟所显示的那样,YS的夏季SST场的特征是稳定存在着几个站点选择性地表冷斑(SCP),其中大部分散布在凸海岸线的水域中。 SCP中的一个位于苏北银行附近,另一个位于山东半岛的东端和朝鲜半岛的三个端。 SCP产生两个过程:一方面,TMF引起的上升流从深层供应冷水;另一方面,TMF引起的上升流从深层供应冷水。另一方面,潮汐混合本身可以向上搅拌底部水,并使水柱垂直均质。在YS半岛尖端周围的水域中,潮流非常强,这为SCP的位置选择性提供了可能的解释。 (C)2009 Elsevier Ltd.保留所有权利。

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