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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >A finite element model for the ocean circulation driven by wind and atmospheric heat flux
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A finite element model for the ocean circulation driven by wind and atmospheric heat flux

机译:风和大气热通量驱动海洋循环的有限元模型

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A finite element model for solving ocean circulation forced by winds and atmospheric heat fluxes is presented. It is vertically integrated 1 1/2 layer model which solves the motion and continuity hydrodynamic equations coupled with the advection-diffusion transport equation for temperature. A space-time Petrov-Galerkin formulation is used to minimize the undesirable numerical spurious oscillation effects of unresolved boundary layers solution of classical Galerkin method. The model is employed to simulate the circulation of the eastern South Pacific Ocean represented by a mesh covering the area between the equator and 30oS and between the 70oW to 100oW. Monthly climatological data are used to determine the wind and heat fluxes forcing functions of the model. The model simulates the main features of observed sea surface temperature (SST) pattern during the summer months showing the upwelling along the coastal boundary with currents oriented northwestward and the presence of southward flows and warm water intrusion in offshore side. The calculated SST fields are compared with the mean observed SST showing that the coastal processes and the interaction with the equatorial band are physically better resolved.
机译:提出了求解风和大气热流强迫的海洋环流的有限元模型。它是垂直集成的1 1/2层模型,用于求解运动和连续性流体动力学方程以及温度的对流扩散方程。时空上的Petrov-Galerkin公式用于最小化经典Galerkin方法未解决的边界层解决方案的不良数值寄生振荡效应。该模型用于模拟由覆盖赤道和30oS之间以及70oW到100oW之间区域的网格代表的南太平洋东部的环流。月度气候数据用于确定模型的风和热通量强迫函数。该模型模拟了夏季月份观测到的海表温度(SST)模式的主要特征,显示了沿沿海边界的上升流,洋流向西北方向流动,并且向南流动并在近海侧侵入了暖水。将计算出的海表温度场与观测到的海表温度平均值进行比较,表明沿岸过程和与赤道带的相互作用在物理上得到了较好的解决。

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