National Center for Atmospheric Research, Boulder, Colorado 80307-3000; email:
Ann Rev Mar Sci. 2016;8:79-94. doi: 10.1146/annurev-marine-122414-033929. Epub 2015 Jul 8.
Observations show that the Southern Hemisphere zonal wind stress maximum has increased significantly over the past 30 years. Eddy-resolving ocean models show that the resulting increase in the Southern Ocean mean flow meridional overturning circulation (MOC) is partially compensated by an increase in the eddy MOC. This effect can be reproduced in the non-eddy-resolving ocean component of a climate model, providing the eddy parameterization coefficient is variable and not a constant. If the coefficient is a constant, then the Southern Ocean mean MOC change is balanced by an unrealistically large change in the Atlantic Ocean MOC. Southern Ocean eddy compensation means that Southern Hemisphere winds cannot be the dominant mechanism driving midlatitude North Atlantic MOC variability.
观测表明,过去 30 年来南半球纬向风应力最大值显著增加。解析海洋模式表明,南大洋平均流经向翻转环流(MOC)的增加部分被涡动 MOC 的增加所补偿。在气候模型的非涡解析海洋分量中可以再现这种效应,前提是涡动参数化系数是可变的,而不是常数。如果系数是常数,那么南大洋平均 MOC 的变化将通过北大西洋 MOC 的不切实际的大幅变化来平衡。南大洋涡动补偿意味着南半球风不可能是驱动中纬度北大西洋 MOC 变化的主要机制。