首页> 外文期刊>Science in China. Series D, Earth sciences >Tidally induced upwelling off Yangtze River estuary and in Zhejiang coastal waters in summer
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Tidally induced upwelling off Yangtze River estuary and in Zhejiang coastal waters in summer

机译:夏季潮汐诱发长江口和浙江沿海水域上升

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MASNUM wave-tide-circulation coupled numerical model (MASNUM coupled model, hereinafter) is developed based on the Princeton Ocean Model (POM). Both POM and MASNUM coupled model are applied in the numerical simulation of the upwelling off Yangtze River estuary and in Zhejiang coastal waters in summer. The upwelling mechanisms are analyzed from the viewpoint of tide, and a new mechanism is proposed. The study suggests that the tidally inducing mechanism of the upwelling includes two dynamic aspects: the barotropic and the baroclinic process. On the one hand, the residual currents induced by barotropic tides converge near the seabed, and upwelling is generated to maintain mass conservation. The climbing of the residual currents along the sea bottom slope also contributes to the upwelling. On the other hand, tidal mixing plays a very important role in inducing the upwelling in the baroclinic sea circumstances. Strong tidal mixing leads to conspicuous front in the coastal waters. The considerable horizontal density gradient across the front elicits a secondary circulation clinging to the tidal front, and the upwelling branch appears near the frontal zone. Numerical experiments are designed to determine the importance of tide in inducing the upwelling. The results indicate that tide is a key and dominant inducement of the upwelling. Experiments also show that coupling calculation of the four main tidal constituents (M_2, S_2, K_1; and O_1), rather than dealing with the single M_2 constituent, improves the modeling precision of the barotropic tide-induced upwelling.
机译:基于普林斯顿海洋模型(POM),开发了MASNUM潮汐环流耦合数值模型(以下简称MASNUM耦合模型)。 POM和MASNUM耦合模型都被应用在长江口上游和浙江沿海水域夏季的数值模拟中。从涨潮的角度分析了上升流的机理,并提出了一种新的机理。研究表明,上升流的潮汐诱发机制包括两个动力学方面:正压过程和斜压过程。一方面,由正压潮感生的剩余电流会聚在海床附近,并产生上升流以维持质量守恒。剩余电流沿海底斜坡的上升也有助于上升。另一方面,潮汐混合在斜压海洋环境中引起上升流中起着非常重要的作用。强烈的潮汐混合作用导致沿海水域明显突出。沿前缘的相当大的水平密度梯度引起紧贴潮汐前缘的次生环流,并且上升分支出现在额叶区域附近。设计数值实验来确定潮汐在诱发上升流中的重要性。结果表明,潮汐是上升流的关键和主要诱因。实验还表明,对四个主要潮汐成分(M_2,S_2,K_1和O_1)进行耦合计算,而不是处理单个M_2成分,可以提高正压潮汐引起的上升流的建模精度。

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