首页> 外文期刊>Geophysical Research Letters >THE SENSITIVITY OF A GLOBAL OCEAN MODEL TO WIND FORCING - A TEST USING SEA LEVEL AND WIND OBSERVATIONS FROM SATELLITES AND OPERATIONAL WIND ANALYSIS
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THE SENSITIVITY OF A GLOBAL OCEAN MODEL TO WIND FORCING - A TEST USING SEA LEVEL AND WIND OBSERVATIONS FROM SATELLITES AND OPERATIONAL WIND ANALYSIS

机译:全球海洋模型对风强迫的敏感性-利用卫星水平和风观测观测卫星以及操作风分析

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摘要

Investigated in this study is the response of a global ocean general circulation model to forcing provided by two wind products: operational analysis at 1000 mb from the National Center for Environmental Prediction (NCEP); observations made by the ERS-1 radar scatterometer. The sea level simulated by the model using the two wind fields is compared to the observations made by the TOPEX/POSEIDON radar altimeter for a period of two years. The focus of the analysis is placed on the large-scale ocean variabilities at mid and high latitudes. The sea level simulations resulting from the ERS-1 wind are found to be closer to the TOPEX/POSEIDON observations over most of the global oceans. However, after being scaled down in wind stress by 50 %, the NCEP wind becomes consistent with the ERS-1 wind in driving the ocean model to simulate the seasonal and intraseasonal sea level variabilities. The sensitivity of the model to wind forcing at the investigated scales is particularly pronounced in the Southern Ocean, where the sea level variabilities are primarily caused by large-scale barotropic motions driven by wind. Other areas of appreciable sensitivity to wind forcing include the western and central North Pacific, the western subtropical South Pacific and the South Indian Ocean. The result of the study has demonstrated the sensitivity of a widely-used ocean model to the quality of wind forcing, as well as the synergistic use of two satellite sensors in the study of ocean dynamics. [References: 21]
机译:本研究调查了全球海洋总环流模式对两种风产品提供的强迫的响应:来自国家环境预测中心(NCEP)的1000 mb的运行分析; ERS-1雷达散射仪的观测结果。该模型使用两个风场模拟的海平面与TOPEX / POSEIDON雷达高度计在两年内的观测值进行了比较。分析的重点放在中高纬度地区的大规模海洋变化上。研究发现,由ERS-1风引起的海平面模拟更接近TOPEX / POSEIDON对全球大多数海洋的观测。但是,在将风压减小50%之后,NCEP风在驱动海洋模型以模拟季节和季节内海平面变化时变得与ERS-1风一致。在研究尺度上,该模型对强迫风的敏感性特别明显,在南大洋,海平面的变化主要是由风驱动的大规模正压运动引起的。其他对风强迫敏感的领域包括北太平洋的中西部和中部,南亚热带的西太平洋和南印度洋。研究结果证明了广泛使用的海洋模型对强迫风的质量的敏感性,以及在海洋动力学研究中两个卫星传感器的协同使用。 [参考:21]

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