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An Electrical Analogy Relating the Atlantic Multidecadal Oscillation to the Atlantic Meridional Overturning Circulation

机译:一个将大西洋多年代际振荡与大西洋子午翻转环流联系起来的电气类比

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摘要

The Atlantic meridional overturning circulation (AMOC) is the northward flow of surface water to subpolar latitudes where deepwater is formed, balanced by southward abyssal flow and upwelling in the vicinity of the Southern Ocean. It is generally accepted that AMOC flow oscillates with a period of 60–80 years, creating a regular variation in North Atlantic sea surface temperature known as the Atlantic multidecadal oscillation (AMO). This article attempts to answer two questions: how is the AMOC driven and why does it oscillate? Using methods commonly employed by chemical engineers for analyzing processes involving flowing liquids, apparently not previously applied to trying to understand the AMOC, an equation is developed for AMOC flow as a function of the meridional density gradient or the corresponding temperature gradient. The equation is based on the similarity between the AMOC and an industrial thermosyphon loop cooler, which circulates a heat transfer liquid without using a mechanical pump. Extending this equation with an analogy between the flow of heat and electricity explains why the AMOC flow oscillates and what determines its period. Calculated values for AMOC flow and AMO oscillation period are in good agreement with measured values.
机译:大西洋子午翻转环流(AMOC)是地表水向北流至形成极水的亚极纬度的区域,由南向深渊流和南大洋附近的上升流平衡。人们普遍认为AMOC流的振荡周期为60-80年,导致北大西洋海表温度出现规律性变化,称为大西洋多年代际振荡(AMO)。本文试图回答两个问题:AMOC是如何驱动的,为什么会振荡?使用化学工程师通常用于分析涉及流动液体的过程的方法(显然以前并未尝试尝试理解AMOC),开发了AMOC流量随子午密度梯度或相应温度梯度变化的方程。该方程式基于AMOC与工业用热虹吸回路冷却器之间的相似性,后者无需使用机械泵即可使传热液体循环。用热流和电流之间的类比来扩展该方程式,可以解释AMOC流为何振荡以及决定其周期的原因。 AMOC流量和AMO振荡周期的计算值与测量值非常吻合。

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  • 作者

    Bruce E. Kurtz;

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  • 年(卷),期 -1(9),6
  • 年度 -1
  • 页码 e100306
  • 总页数 10
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