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Noble gas tracers of ventilation during deep-water formation in the Weddell Sea

机译:Weddell海水层深水形成期间通风的高尚气体示踪剂

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To explore the dynamics and implications of incomplete air-sea equilibration during the formation of abyssal water masses, we simulated noble gases in the Estimating the Circulation & Climate of the Ocean (ECCO) global ocean state estimate. A novel computation approach utilizing a matrix-free Newton-Krylov (MFNK) scheme was applied to quickly compute the periodic seasonal solutions for noble gas tracers. MFNK allows for quick computation of a cyclo-stationary solution for tracers (i.e., a spun-up, repeating seasonal cycle), which would otherwise be computationally infeasible due to the long time scale of dynamic adjustment of the abyssal ocean (1000's of years). A suite of experiments isolates individual processes, including atmospheric pressure effects, the solubility pump and air-sea bubble fluxes. In addition to these modeled processes, a volumetric contribution of 0.28 ± 0.07% of glacial melt water is required to reconcile deep-water observations in the Weddell Sea. Another primary finding of our work is that the saturation anomaly of heavy noble gases in model simulations is in excess of two-fold more negative than is suggested from Weddell Sea observations. This result suggests that model water masses are insufficiently ventilated prior to subduction and thus there is insufficient communication between atmosphere and ocean at high latitudes. The discrepancy between noble gas observations and ECCO simulations highlights that important inadequacies remain in how we model high-latitude ventilation with large implications for the oceanic uptake and storage of carbon.
机译:为了探讨空腹水肿期间不完全海洋平衡的动态和影响,我们模拟了贵族气体在估算海洋(ECCO)全球海洋国家估算中的循环和气候。应用利用免费的牛顿-Krylov(MFNK)方案的新颖计算方法以快速计算贵族气体示踪剂的周期性季节性解决方案。 MFNK允许快速计算用于示踪剂的基辅固定解决方案(即,旋转,重复季节循环),否则由于大海洋的动态调整长期规模(1000年)的长时间规模,这将是计算不足的。一套实验分离了个体工艺,包括大气压效应,溶解度泵和空袭泡沫助熔剂。除了这些建模过程之外,需要0.28±0.07%的冰川熔体水的体积贡献来调和饲养海洋中的深水观察。我们的作品的另一个主要发现是,模拟模型模拟中的重高贵气体的饱和异常超过两倍,而不是韦德尔海观测所建议的负面。该结果表明,在俯冲之前,模型水质量不充分通风,因此在高纬度地区的大气和海洋之间存在通信不足。贵族气体观测和ECCO模拟之间的差异突出了重要的不足仍然存在于如何模拟高纬度通风,对海洋摄取和碳的储存具有很大的影响。

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