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The instability of diffusive convection and its implication for the thermohaline staircases in the deep Arctic Ocean

机译:The instability of diffusive convection and its implication for the thermohaline staircases in the deep arctic Ocean

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摘要

In the present study, the classical description of diffusive convection is updated to interpret the instability of diffusive interfaces and the dynamical evolution of the bottom layer in the deep Arctic Ocean. In the new consideration of convective instability, both the background salinity stratification and rotation are involved. The critical Rayleigh number of diffusive convection is found to vary from 10(3) to 10(11) in the deep Arctic Ocean as well as in other oceans and lakes. In such a wide range of conditions, the interface-induced thermal Rayleigh number is shown to be consistent with the critical Rayleigh number of diffusive convection. In most regions, background salinity stratification is found to be the main hindrance to the occurrence of convecting layers. With the new parameterization, it is predicted that the maximum thickness of the bottom layer is 1051 m in the deep Arctic Ocean, which is close to the observed value of 929 m. The evolution time of the bottom layer is predicted to be similar to 100 yr, which is on the same order as that based on C-14 isolation age estimation.
机译:在本研究中,对扩散对流的经典描述进行了更新,以解释北冰洋深处的扩散界面的不稳定性和底层的动力学演化。在对流不稳定性的新考虑中,涉及背景盐度分层和旋转。发现在北冰洋深处以及其他海洋和湖泊中,扩散对流的临界瑞利数在10(3)至10(11)之间变化。在如此广泛的条件下,界面引起的热瑞利数显示为与扩散对流的临界瑞利数一致。在大多数地区,背景盐分分层是形成对流层的主要障碍。通过新的参数化,可以预测北冰洋深处的底层最大厚度为1051 m,接近于929 m的观测值。底层的演化时间预计与100年相似,与基于C-14隔离年龄估计的演化时间相同。

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