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Comparison of the Effect of Parameterized Eddy Fluxes of Thickness and Potential Vorticity

机译:参数化厚度和涡旋涡流的影响比较

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摘要

Parameterization of mesoscale eddies is an important problem of modern ocean dynamics and modeling. The most widely used scheme is the so-called Gent-McWilliams parameterization, which describes the eddy-induced transport of tracers, including temperature, density, and isopycnal thickness (TH). An alternative scheme, proposed by Green and Welander, deals with parameterizing eddy fluxes of potential vorticity (PV). Many recent studies propose using it, for it includes the effect of eddy Reynolds stresses that may influence mean flows. These two schemes are compared in the simplest configuration of two-layer quasigeostrophic channel flow, which enables analytical solutions for zonal-mean fields. It is shown how the parameterizations shape the zonally averaged zonal velocity profiles, with special attention paid to the role of the Reynolds stresses and momentum conservation. The zonally averaged zonal velocity profiles are sensitive to the amplitude and profiles of TH and PV diffusivities. For small enough diffusivities the TH parameterization may lead to solutions resembling those for the PV parameterization if it uses the diffusivity of the latter; that is, it may mimic the impact of the Reynolds stresses on the mean flow.
机译:中尺度涡旋的参数化是现代海洋动力学和建模的重要问题。使用最广泛的方案是所谓的Gent-McWilliams参数化,它描述了涡流诱导的示踪剂传输,包括温度,密度和等深层厚度(TH)。 Green和Welander提出的另一种方案是对潜在涡度(PV)的涡通量进行参数化处理。最近的许多研究提出使用它,因为它包括可能影响平均流量的涡旋雷诺应力的影响。在最简单的两层准营养流通道结构中对这两种方案进行了比较,这为区域平均场提供了解析解决方案。它显示了参数化如何塑造区域平均纬向速度剖面,并特别注意了雷诺应力和动量守恒的作用。纬向平均纬向速度廓线对TH和PV扩散率的幅度和廓线敏感。对于足够小的扩散率,如果TH参数化使用PV的扩散率,则可能导致类似于PV参数化的解决方案。也就是说,它可以模拟雷诺应力对平均流量的影响。

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  • 来源
    《Journal of Physical Oceanography》 |2014年第9期|2470-2484|共15页
  • 作者单位

    Alfred Wegener Inst Polar & Marine Res, D-27570 Bremerhaven, Germany;

    Alfred Wegener Inst Polar & Marine Res, D-27570 Bremerhaven, Germany;

    Alfred Wegener Inst Polar & Marine Res, D-27570 Bremerhaven, Germany;

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