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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Modelling of upwelling-downwelling cycles caused by variable wind in a very sensitive coastal system
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Modelling of upwelling-downwelling cycles caused by variable wind in a very sensitive coastal system

机译:在非常敏感的沿海系统中,由变风引起的上升-下降-上升周期模型

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The hydrothermodynamics of upwelling and downwelling events as a consequence of successively wind field changes are investigated using a 11/2 layer numerical model for open and limited coastal regions. The model includes the essential dynamical processes. Solutions are found in a regional ocean basin and are forced by non-uniform and time-dependent wind fields. The study case is the Cabo Frio Coast (Rio de Janeiro, Brazil), a very sensitive hydrodynamic coastal system, where the passage of cold fronts modifies completely the NE wind prevailing pattern (favourable to upwelling events) to SW winds (favourable to downwelling). The model is successful in simulating many features of observed patterns. Initially, the numerical experiments include a simple corner coastline shape, relevant to the Cabo Frio region, to understand the mechanisms and to clarify the relative importance of different factors in producing the strong property gradients typical of upwelling areas. The coastal ocean is forced by different wind patterns including non-permanent wind field rotations. Later, the goal of this paper, the observed SST variability during typical summer months in the coastal region of Cabo Frio, is simulated numerically. The change of SST is reproduced with a good degree of approximation, when upwelling and downwelling events take place. The role of some physical processes and the initial conditions is clarified, isolating their effects. The obtained results demonstrate that the existing theory of upper layer dynamics formulated in the proposed simple model account for the observed phenomena on occasion of upwelling downwelling cycles caused by variable wind in space and time. (C) 2003 Elsevier Ltd. All rights reserved. [References: 37]
机译:对于连续和有限的沿海地区,使用11/2层数值模型研究了由于连续风场变化而引起的上升流和下降流事件的水热力学。该模型包括基本的动力学过程。解决方案是在一个区域性海盆中找到的,并且受非均匀且随时间变化的风场的影响。研究案例是卡波弗里奥海岸(巴西里约热内卢),这是一个非常敏感的水动力沿海系统,冷锋的通过完全改变了东北风的主导模式(有利于上升流)到西南风(有利于下降流)。 。该模型成功地模拟了观察到的模式的许多特征。最初,数值实验包括与Cabo Frio地区有关的简单拐角海岸线形状,以了解机理并阐明不同因素在产生上升区典型的强属性梯度中的相对重要性。沿海海洋受不同的风型强迫,包括非永久性的风场旋转。后来,本文的目标是对Cabo Frio沿海地区典型夏季月份观测到的SST变异性进行数值模拟。当发生上升和下降事件时,SST的变化可以很好地再现。阐明了某些物理过程和初始条件的作用,从而隔离了它们的影响。获得的结果表明,在所提出的简单模型中建立的现有上层动力学理论解释了由时空变化的风在时空引起的上涌下涌周期时的观测现象。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:37]

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