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首页> 外文期刊>Journal of Physical Oceanography >Adjustment of the Meridional Overturning Circulation and Its Dependence on Depth of Mixing
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Adjustment of the Meridional Overturning Circulation and Its Dependence on Depth of Mixing

机译:子午翻转循环的调整及其对混合深度的依赖

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The relative roles of advective processes and mixing on the temporal adjustment of the meridional overturning circulation are examined, in particular the effects of mixing in either the abyssal or upper ocean. Laboratory experiments with convectively driven overturning and imposed stirring rates show that the circulation adjusts toward an equilibrium state on time scales governed by mixing in the upper boundary layer region but independent of the mixing rate in the bulk of the interior. The equilibrium state of the stratification is dependent only on the rate of mixing in the boundary layer. An idealized high-resolution ocean model shows adjustment (of a two-cell circulation) dominated primarily by the advective ventilation time scale, consistent with a view of the circulation determined by water mass transformation occurring primarily near the surface. Both the experiments and the model results indicate that adjustments of the circulation are controlled by surface buoyancy uptake (or rejection) and that the nonequilibrium circulation is dominated by advective processes, especially if the average abyssal ocean diffusivity is less than 3 x 10(-5) m(2) s(-1).
机译:研究了对流过程和混合对子午翻转循环时间调整的相对作用,特别是在深海或上层海洋中混合的影响。对流驱动倾覆并施加搅拌速率的实验室实验表明,循环在时间尺度上朝着平衡状态调整,该时间尺度由上边界层区域中的混合控制,但与内部大部分区域的混合速度无关。分层的平衡状态仅取决于边界层中的混合速率。理想化的高分辨率海洋模型显示出(由两个单元组成的循环)调节主要由对流换气时间尺度决定,这与由主要在地表附近发生的水质转化所确定的循环的观点一致。实验和模型结果均表明,环流的调节受表面浮力的吸收(或排斥)控制,非平衡环流由平流过程控制,特别是如果平均深海海洋扩散率小于3 x 10(-5) )m(2)s(-1)。

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