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首页> 外文期刊>Journal of Physical Oceanography >A Parameterization with a Constrained Potential Energy Conversion Rate of Vertical Mixing Due to Langmuir Turbulence
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A Parameterization with a Constrained Potential Energy Conversion Rate of Vertical Mixing Due to Langmuir Turbulence

机译:朗缪尔湍流引起的垂直混合势能转化率受限的参数化

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In this study we develop a new parameterization for turbulent mixing in the ocean surface boundary layer (OSBL), including the effect of Langmuir turbulence. This new parameterization builds on a recent study (Reichl and Hallberg 2018, hereafter RH18), which predicts the available energy for turbulent mixing against stable stratification driven by shear and convective turbulence. To investigate the role of Langmuir turbulence in the framework of RH18, we utilize data from a suite of previously published large-eddy simulation (LES) experiments (Li and Fox-Kemper 2017, hereafter LF17) with and without Langmuir turbulence under different idealized forcing conditions. We find that the parameterization of RH18 is able to reproduce the mixing simulated by the LES in the non-Langmuir cases, but not the Langmuir cases. We therefore investigate the enhancement of the integrated vertical buoyancy flux within the entrainment layer in the presence of Langmuir turbulence using the LES data. An additional factor is introduced in the RH18 framework to capture the enhanced mixing due to Langmuir turbulence. This additional factor depends on the surface-layer averaged Langmuir number with a reduction in the presence of destabilizing surface buoyancy fluxes. It is demonstrated that including this factor within the RH18 OSBL turbulent mixing parameterization framework captures the simulated effect of Langmuir turbulence in the LES, which can be used for simulating the effect of Langmuir turbulence in climate simulations. This new parameterization is compared to the KPP-based Langmuir entrainment parameterization introduced by LF17, and differences are explored in detail.
机译:在这项研究中,我们开发了一种新的参数化方法,用于海洋表面边界层(OSBL)中的湍流混合,包括Langmuir湍流的影响。这个新的参数化建立在最近的一项研究(Reichl和Hallberg 2018,此后为RH18)的基础之上,该研究预测了湍流混合的有效能量与剪切和对流湍流驱动的稳定分层的关系。为了研究Langmuir湍流在RH18框架中的作用,我们利用了一组先前已发表的大涡模拟(LES)实验(Li和Fox-Kemper 2017,以下称为LF17)中的数据,这些数据在不同的理想强迫下有无Langmuir湍流条件。我们发现,在非Langmuir情况下,RH18的参数化能够重现LES模拟的混合,但在Langmuir情况下则不能。因此,我们使用LES数据研究了在存在Langmuir湍流的情况下,夹带层内集成垂直浮力通量的增强。在RH18框架中引入了一个附加因素,以捕获由于Langmuir湍流引起的增强混合。该附加因素取决于表面层平均朗格缪尔数,并且在不稳定的表面浮力通量的存在下有所减少。结果表明,将此因素包含在RH18 OSBL湍流混合参数化框架中可捕获LES中Langmuir湍流的模拟效果,可用于在气候模拟中模拟Langmuir湍流的效果。将此新参数化与LF17引入的基于KPP的Langmuir夹带参数化进行了比较,并详细探讨了差异。

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