论文标题

全球海洋循环和热含量对涡流耗散时间尺度的急性敏感性

Acute sensitivity of global ocean circulation and heat content to eddy energy dissipation time-scale

论文作者

Mak, Julian, Marshall, David P., Madec, Gurvan, Maddison, James R.

论文摘要

全球大洋推翻循环,严格取决于全球密度分层,在调节气候进化中起着核心作用。尽管众所周知,全球分层曲线对南方海洋动力学表现出很大的依赖性,尤其是对风和浮力强迫,但我们在这里证明该分层对中尺度的涡流耗能耗散时间尺度也非常敏感。在具有能量限制的中尺度涡流参数化的全球海洋循环模型的背景下,这表明,涡流耗散时间尺度的适度变化导致与海洋循环有关的关键指标的显着差异,即,即南极旋转电流的运输,大西洋集合,膨胀的循环强度和全球热量量,超过了时间 - 超过时间,超过了时间 - 时间秒。结果表明,需要在百年纪念时间尺度上限制与涡流耗散相关的不确定性,还需要在千禧一代尺度上进行古气候模拟。

The global ocean overturning circulation, critically dependent on the global density stratification, plays a central role in regulating climate evolution. While it is well-known that the global stratification profile exhibits a strong dependence to Southern Ocean dynamics and in particular to wind and buoyancy forcing, we demonstrate here that the stratification is also acutely sensitive to the mesoscale eddy energy dissipation time-scale. Within the context of a global ocean circulation model with an energy constrained mesoscale eddy parameterization, it is shown that modest variations in the eddy energy dissipation time-scale lead to significant variations in key metrics relating to ocean circulation, namely the Antarctic Circumpolar Current transport, Atlantic Meridional Overturning Circulation strength, and global ocean heat content, over long time-scales. The results highlight a need to constrain uncertainties associated with eddy energy dissipation for climate model projections over centennial time-scales, but also for paleoclimate simulations over millennial time-scales.

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