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首页> 外文期刊>Journal of Climate >North Atlantic climate response to Lake Agassiz drainage at coarse and ocean eddy-permitting resolutions.
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North Atlantic climate response to Lake Agassiz drainage at coarse and ocean eddy-permitting resolutions.

机译:在粗略的和允许海洋涡旋的决议下,北大西洋对阿加西兹湖排水的气候响应。

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摘要

The North Atlantic climate response to the catastrophic drainage of proglacial Lake Agassiz into the Labrador Sea is analyzed with coarse and ocean eddy-permitting versions of a global coupled climate model. The North Atlantic climate response is qualitatively consistent in that a large-scale cooling is simulated regardless of the model resolution or region of freshwater discharge. However, the magnitude and duration of the North Atlantic climate response is found to be sensitive to model resolution and the location of freshwater forcing. In particular, the long-term entrainment of freshwater along the boundary at higher resolution and its gradual, partially eddy-driven escape into the interior leads to low-salinity anomalies persisting in the subpolar Atlantic for decades longer. As a result, the maximum decline of the Atlantic meridional overturning circulation (AMOC) and the ocean meridional heat transport (MHT) is amplified by about a factor of 2 at ocean eddy-permitting resolution, and the recovery is delayed relative to the coarse grid model. This, in turn, increases the long-term cooling in the high-resolution simulations. A decomposition of the MHT response reveals an increased role for transients and the horizontal mean component of MHT at higher resolution. With fixed wind stress curl, it is a stronger response of bottom pressure torque to the freshwater forcing at higher resolution that leads to a larger anomaly of the depth-integrated circulation.
机译:利用全球耦合气候模式的粗略和海洋涡流版本,分析了北大西洋对冰激凌的阿加西兹湖向拉布拉多海灾难性排水的反应。北大西洋的气候响应在质量上是一致的,因为无论模型分辨率或淡水排放区域如何,都可以模拟大规模降温。但是,发现北大西洋气候响应的幅度和持续时间对模型分辨率和淡水强迫位置敏感。特别是,沿边界长期以较高的分辨率夹带淡水,以及其逐渐,部分涡流驱动的向内部逸出,导致低盐度异常在亚极大西洋持续了数十年之久。结果,大西洋经向翻转环流(AMOC)和海洋经向热传输(MHT)的最大衰减在允许海洋涡流的分辨率下放大了大约2倍,相对于粗网格,恢复被延迟了模型。反过来,这又增加了高分辨率模拟中的长期冷却。 MHT反应的分解揭示了瞬变和高分辨率下MHT的水平平均分量的作用增加。在固定的风应力卷曲下,更高分辨率的底部压力扭矩对淡水强迫的响应更强,这导致深度积分环的异常更大。

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