首页> 外文期刊>Journal of Marine Research >The effects of differential vertical diffusion of T and S in a box model of thermohaline circulation
【24h】

The effects of differential vertical diffusion of T and S in a box model of thermohaline circulation

机译:T和S差异垂直扩散在热盐循环箱模型中的作用

获取原文
获取原文并翻译 | 示例
           

摘要

A diffusive box model, consistent with geostrophy, is proposed as an alternative to more usual advective box models of the ocean thermohaline circulation. When vertical diffusion coefficients for T and S are taken as identically equal (the normal assumption in all numerical ocean models to date), the diffusive box model exhibits both steady-state modes and time-dependent behaviors which are essentially indistinguishable from those of an advective model, under both fixed flux and mixed (T restoring) boundary conditions. The thermohaline "circulation" of the diffusive box model, however, is a combination of a convective branch and a vertical diffusive branch, involving zero volume flux. Modifications in behavior of the diffusive box model are investigated for a plausible range of values for the ratio d ≡ K_S/K_T of the vertical turbulent diffusivities of S and T. When surface fluxes of heat and freshwater are constant, the model with d ≠ 1 exhibits additional steady-state modes in which convection is absent from the system, as well as a periodic oscillatory mode. Compared to results with d ≡ 1 under mixed surface boundary conditions, the model with d ≠ 1 exhibits extended ranges of multiple equilibria, a different mode transition near present-day values of freshwater forcing magnitude, and the possibility of quasi-periodic oscillatory states. The sensitivity of the present box model, coupled with that previously observed in a primitive equation model (Gargett and Holloway, 1992), raises serious questions about the ability of numerical models to predict the evolution of the ocean thermohaline circulation under changing atmospheric forcing, even if other problems with such prediction were resolved.
机译:有人提出了一种与地球地质现象相一致的扩散箱模型,作为海洋热盐环流更为常见的对流箱模型的替代方案。当将T和S的垂直扩散系数设为相等时(迄今为止,在所有数值海洋模型中都是正常假设),扩散盒模型既表现出稳态模式,又表现出与时间有关的行为,这与平流模型基本没有区别。固定通量和混合(T恢复)边界条件下的模型。但是,扩散盒模型的热盐“循环”是对流分支和垂直扩散分支的组合,涉及零体积通量。对于S和T的垂直湍流扩散率的比率d≡K_S / K_T的合理范围内的值,研究了扩散箱模型的行为修正。当热和淡水的表面通量恒定时,d≠1的模型展示了系统没有对流的其他稳态模式以及周期性振荡模式。与在混合表面边界条件下d≡1的结果相比,d≠1的模型表现出多重均衡的扩展范围,在当前的淡水强迫值附近具有不同的模式转变,并可能出现准周期振荡状态。当前盒模型的敏感性,加上先前在原始方程模型中观察到的敏感性(Gargett和Holloway,1992年),引起了一个严重的问题,即数值模型预测在大气强迫变化的情况下海洋热盐环流演变的能力,即使是否解决了此类预测的其他问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号