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A simple and self-consistent geostrophic-force-balance model of the thermohaline circulation with boundary mixing

机译:具有边界混合的热盐环流的简单且自洽的地转力平衡模型

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A simple model of the thermohaline circulation (THC) is formulated, with the objective to represent explicitly the geostrophic force balance of the basinwide THC. The model comprises advective-diffusive density balances in two meridional-vertical planes located at the eastern and the western walls of a hemispheric sector basin. Boundary mixing constrains vertical motion to lateral boundary layers along these walls. Interior, along-boundary, and zonally integrated meridional flows are in thermal-wind balance. Rossby waves and the absence of interior mixing render isopycnals zonally flat except near the western boundary, constraining meridional flow to the western boundary layer. The model is forced by a prescribed meridional surface density profile. This two-plane model reproduces both steady-state density and steady-state THC structures of a primitive-equation model. The solution shows narrow deep sinking at the eastern high latitudes, distributed upwelling at both boundaries, and a western boundary current with poleward surface and equatorward deep flow. The overturning strength has a 2/3-power-law dependence on vertical diffusivity and a 1/3-power-law dependence on the imposed meridional surface density difference. Convective mixing plays an essential role in the two-plane model, ensuring that deep sinking is located at high latitudes. This role of convective mixing is consistent with that in three-dimensional models and marks a sharp contrast with previous two-dimensional models. Overall, the two-plane model reproduces crucial features of the THC as simulated in simple-geometry three-dimensional models. At the same time, the model self-consistently makes quantitative a conceptual picture of the three-dimensional THC that hitherto has been expressed either purely qualitatively or not self-consistently.
机译:建立了一个简单的热盐循环(THC)模型,其目的是明确表示整个盆地THC的地转力平衡。该模型包括位于半球扇形盆地东壁和西壁的两个子午垂直平面上的对流扩散密度平衡。边界混合将垂直运动限制为沿着这些壁的横向边界层。内部,沿边界和区域整合的子午流处于热风平衡状态。罗斯比波和缺乏内部混合使等位面呈带状平坦,除了靠近西边界,从而限制了向西边界层的子午流。该模型受规定的子午面密度分布强制。 此两平面模型可重现原始方程模型的稳态密度和稳态THC结构。该解决方案显示,东部高纬度地区的深部沉陷较窄,在两个边界处均呈上升流分布,并且西部边界流具有极地表面和赤道向深流。倾覆强度具有垂直扩散率的2/3幂定律和施加的子午面密度差的1/3幂定律。对流混合在两平面模型中起着至关重要的作用,可确保深沉位于高纬度地区。对流混合的作用与三维模型中的作用是一致的,并且与以前的二维模型形成鲜明对比。 总体而言,二维平面模型再现了THC的关键特征,如在简单模型中模拟的那样。几何三维模型。同时,该模型自洽地量化了迄今为止仅以定性或非自洽方式表达的三维THC的概念图。

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