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Impact of Data Assimilation and Resolution on Modeling the Gulf Stream Pathway

机译:数据同化和分辨率对湾流路径建模的影响

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In this paper, we study, in detail, one important aspect of our ongoing work on global ocean prediction. Modeling the behavior of western boundary currents, like the Gulf Stream, has been a long-standing issue. Recent modeling results suggest that the abyssal currents play an important role in determining the pathway of the Gulf Stream. The present-generation ocean prediction model fails to adequately reproduce the Gulf Stream pathway, and does not generate a vigorous abyssal circulation. Here we use twin simulations, at different horizontal resolutions and with and without data assimilation, to study their effects on modeling the observed Gulf Stream pathway. Increasing the resolution of the model improves the strength of the abyssal circulation, but still fails to predict the Gulf Stream pathway. Surprisingly, assimilating sea level anomalies and upper ocean profiles produces a robust abyssal circulation and a Gulf Stream pathway similar to the observed pathway. However, the Gulf Stream with assimilation is weaker than observed and, unlike most regions of the deep ocean, there is no skill in the 14-day forecasts. All simulations were performed under our current Department of Defense (DoD) High Performance Computing Modernization Program (HPCMP) Challenge Project, Eddy Resolving Global Data Assimilation Including Tides, or our earlier HPC Challenge Project, Global Ocean Prediction using HYCOM.
机译:在本文中,我们将详细研究正在进行的全球海洋预测工作的一个重要方面。对西方边界流(如墨西哥湾流)的行为进行建模一直是一个长期存在的问题。最近的模拟结果表明,深海流在确定墨西哥湾流的路径中起着重要作用。当前的海洋预测模型无法充分再现墨西哥湾流的路径,并且不会产生剧烈的深渊环流。在这里,我们使用双水平模拟,在不同水平分辨率下以及有无数据同化的情况下,研究它们对模拟观察到的墨西哥湾流路径的影响。提高模型的分辨率可以改善深海环流的强度,但仍无法预测墨西哥湾流的路径。出乎意料的是,吸收海平面异常和上层海洋剖面会产生强大的深海环流和与观测到的路径相似的墨西哥湾流路径。但是,具有同化作用的墨西哥湾流比观测到的要弱,并且与大多数深海地区不同,在14天的预报中没有技巧。所有模拟都是在我们当前的美国国防部(DoD)高性能计算现代化计划(HPCMP)挑战项目,解决包括潮汐在内的全球数据同化的涡流或我们之前的HPC挑战项目,使用HYCOM进行的全球海洋预测下进行的。

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