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首页> 外文期刊>Geophysical Research Letters >An improved simulation of the deep Pacific Ocean using optimally estimated vertical diffusivity based on the Green's function method
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An improved simulation of the deep Pacific Ocean using optimally estimated vertical diffusivity based on the Green's function method

机译:基于格林函数法的最优估计垂直扩散率对深太平洋的一种改进模拟

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摘要

An improved vertical diffusivity scheme is introduced into an ocean general circulation model to better reproduce the observed features of water property distribution inherent in the deep Pacific Ocean structure. The scheme incorporates (a) a horizontally uniform background profile, (b) a parameterization depending on the local static stability, and (c) a parameterization depending on the bottom topography. Weighting factors for these parameterizations are optimally estimated based on the Green's function method. The optimized values indicate an important role of both the intense vertical diffusivity near rough topography and the background vertical diffusivity. This is consistent with recent reports that indicate the presence of significant vertical mixing associated with finite-amplitude internal wave breaking along the bottom slope and its remote effect. The robust simulation with less artificial trend of water properties in the deep Pacific Ocean illustrates that our approach offers a better modeling analysis for the deep ocean variability.
机译:改进的垂直扩散率方案被引入到海洋总环流模型中,以更好地再现深海太平洋结构固有的水属性分布的观测特征。该方案包括(a)水平均匀的背景轮廓,(b)取决于局部静态稳定性的参数化,以及(c)取决于底部地形的参数化。这些参数化的权重因子是根据格林函数方法最佳估计的。优化值表明,粗糙地形附近的强烈垂直扩散率和背景垂直扩散率都起着重要作用。这与最近的报告一致,这些报告表明存在与沿底部斜坡的有限振幅内部波破裂相关的大量垂直混合及其遥远的影响。鲁棒的模拟结果表明,在深海中,水属性的人为趋势较少,这表明我们的方法为深海的变化提供了更好的建模分析。

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