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Effects of atmospheric dynamics and ocean resolution on bi-stability of the thermohaline circulation examined using the Grid ENabled Integrated Earth system modelling (GENIE) framework

机译:使用网格使能集成地球系统建模(GENIE)框架检验了大气动力学和海洋分辨率对热盐环流双稳定性的影响

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摘要

We have used the Grid ENabled Integrated Earth system modelling (GENIE) framework to undertake a systematic search for bi-stability of the ocean thermohaline circulation (THC) for different surface grids and resolutions of 3-D ocean (GOLDSTEIN) under a 3-D dynamical atmosphere model (IGCM). A total of 407,000 years were simulated over a three month period using Grid computing. We find bi-stability of the THC despite significant, quasi-periodic variability in its strength driven by variability in the dynamical atmosphere. The position and width of the hysteresis loop depends on the choice of surface grid (longitude-latitude or equal area), but is less sensitive to changes in ocean resolution.
机译:我们已使用网格使能的集成地球系统建模(GENIE)框架对3-D海洋下不同表面网格和3D海洋分辨率(GOLDSTEIN)的海洋热盐环流(THC)的双稳定性进行系统搜索。动态大气模型(IGCM)。使用网格计算在三个月的时间内共模拟了407,000年。我们发现THC的双稳定性,尽管其强度受到动态气氛中可变性驱动的明显的准周期性变化。磁滞回线的位置和宽度取决于表面网格的选择(经纬度或等面积),但对海洋分辨率的变化较不敏感。

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