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Diagnostics of the oceanic thermohaline circulation in a coupled climate model

机译:耦合气候模型中海洋热盐环流的诊断

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Two century-scale integrations of a global coupled model consisting of the GISS atmospheric model and the HYCOM ocean model are carried out: a control run assuming fixed atmospheric composition, and a perturbation run assuming gradual doubling of CO_2. The model does not use flux corrections at the air-sea interface, nor is the ocean "spun up" prior to coupling. When increasing CO_2 at the rate of 1% per year to twice its original level and keeping it constant thereafter, the model responds with a 2℃ increase in 200 years in the global mean surface air temperature and a virtually unchanged Atlantic meridional overturning circulation (MOC). Due to the predominantly isopycnic character of HYCOM, geographic details of the 3-D thermohaline circulation in potential density space can be extracted from the model output with relative ease. The analysis confirms that even regional details of the MOC in this experiment are rather insensitive to the climate change brought on by CO_2 doubling. Furthermore, the analysis reveals strong similarities between the simulated and the observed MOC.
机译:由GISS大气模型和HYCOM海洋模型组成的全球耦合模型进行了两个世纪的积分:假定大气成分固定的控制运行,以及假定CO_2逐渐加倍的扰动运行。该模型不使用海-气界面处的通量校正,也不会在耦合之前“旋转”海洋。当以每年1%的速度将CO_2增加到原始水平的两倍并在此后保持恒定时,该模型的响应是全球平均地面气温在200年内增加了2℃,而大西洋经向翻转环流(MOC)几乎没有变化)。由于HYCOM的主要等渗特性,可以相对容易地从模型输出中提取势密度空间中3-D热盐循环的地理细节。分析证实,在此实验中,即使是MOC的区域细节也对CO_2倍增引起的气候变化不敏感。此外,分析还揭示了模拟MOC与观察到的MOC之间的强烈相似性。

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