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Asymmetric response of the Atlantic Meridional OceanCirculation to freshwater anomalies in astrongly-eddying global ocean model

机译:在一个充满漩涡的全球海洋模型中,大西洋子午海洋 r n环流对淡水异常的非对称响应

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The Atlantic Meridional Overturning Circulation (AMOC) responds sensitively to density changes in regions of deepwater formation. In this paper, we investigate the nonlinear response of the AMOC to large amplitude freshwater changes around Greenland using a strongly-eddying global ocean model. Due to a 0.5 Sv freshwater input, the maximum AMOC at 35 degrees N decreases by about 50% over a 45 year period. The AMOC does not recover over a period of 50 years when the freshwater input is ceased at year 45. However, when reversing the sign of the freshwater input at year 45, the AMOC needs only about 10 years to fully recover. The mechanism that causes this asymmetric response in theAMOC is clarified using water mass transformation theory.
机译:大西洋子午翻转环流(AMOC)对深水形成区域的密度变化敏感。在本文中,我们使用强烈涡旋的全球海洋模型研究AMOC对格陵兰周围大振幅淡水变化的非线性响应。由于输入了0.5 Sv的淡水,在45年的时间段内,摄氏35度的最大AMOC降低了约50%。从第45年开始停止淡水输入后,AMOC不会在50年内恢复。但是,当反转第45年的淡水输入信号时,AMOC只需大约10年即可完全恢复。使用水质转化理论阐明了导致AMOC中这种不对称响应的机制。

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