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Stommel's box model of thermohaline circulation revisited - The role of mechanical energy supporting mixing and the wind-driven gyration

机译:重新审视了stommel的温盐环流箱模型 - 机械能支持混合和风驱回转的作用

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摘要

The classical two-box model of Stommel is extended in two directions: replacing the buoyancy constraint with an energy constraint and including the wind-driven gyre. Stommel postulated a buoyancy constraint for the thermohaline circulation, and his basic idea has evolved into the dominating theory of thermohaline circulation; however, recently, it is argued that the thermohaline circulation is maintained by mechanical energy from wind stress and tides. The major difference between these two types of models is the bifurcation structure: the Stommel-like model has two thermal modes ( one stable and another one unstable) and one stable haline mode, whereas the energy-constraint model has one stable thermal mode and two saline modes ( one stable and another one unstable). Adding the wind-driven gyre changes the threshold value of thermohaline bifurcation greatly; thus, the inclusion of the wind-driven gyre is a vital step in completely modeling the physical processes related to thermohaline circulation.
机译:Stommel的经典两箱模型在两个方向上进行了扩展:用能量约束代替浮力约束,并包括风力驱动的回转。 Stommel提出了热盐循环的浮力约束条件,他的基本思想已经演变为热盐循环的主导理论。然而,最近有人认为,热盐环流是由来自风应力和潮汐的机械能维持的。这两类模型之间的主要区别在于分叉结构:类似于Stommel的模型具有两种热模式(一种稳定且另一种不稳定)和一种稳定的盐度模式,而能量约束模型具有一种稳定的热模式和两种盐水模式(一种稳定,另一种不稳定)。增加风力驱动的回旋会大大改变热盐分叉的阈值;因此,在完全模拟与热盐环流有关的物理过程中,包括风动回转是至关重要的一步。

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    Guan, YP; Huang, RX;

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  • 年度 2008
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