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Nonlinear Horizontal Diffusion for GCMs

机译:GCM的非线性水平扩散

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The mixing-length-based parameterization of horizontal diffusion, which was originally proposed by Smagorinsky, is revisited. The complete tendencies of horizontal momentum diffusion, the associated frictional heating, and horizontal diffusion of sensible heat in spherical geometry are derived. The formulations are modified for the terrain-following vertical-hybrid-coordinate system in a way that ensures energy and angular momentum conservation at each layer. Test simulations with a simple general circulation model, run at T42 horizontal resolution and for permanent January conditions, confirm the conservation properties and highlight the enhancement of nonlinear horizontal diffusion in areas of high baroclinic activity. The simulated internal variability is dependent on the nature of the horizontal diffusion, with high-frequency variability being enhanced over the northern continents and low-frequency variability being increased (decreased) over the Pacific (Atlantic) Ocean when using nonlinear rather than linear diffusion. Locally reduced horizontal dissipation over Europe is compensated by increased dissipation owing to vertical diffusion, indicating the potential importance of nonlinear horizontal diffusion for gravity wave-resolving simulations. Inspection of the spectral energy reveals that the scheme needs to be modified in order to damp unbalanced ageostrophic motions at the smallest resolved scales more efficiently. A corresponding empirical modification is proposed and proves to work properly.
机译:重新讨论了Smagorinsky最初提出的基于混合长度的水平扩散参数化方法。得出了球形动量中水平动量扩散,相关的摩擦加热和显热水平扩散的完整趋势。修改了地形跟随垂直混合坐标系的公式,以确保每一层的能量和角动量守恒。使用简单的通用循环模型进行的测试模拟在水平的T42分辨率和1月的永久性条件下运行,确认了保藏特性并强调了在高斜压活动区域非线性水平扩散的增强。模拟的内部可变性取决于水平扩散的性质,当使用非线性扩散而不是线性扩散时,北部大陆上的高频可变性增强,而太平洋(大西洋)上的低频可变性则增大(减小)。由于垂直扩散,增加了欧洲的水平散射,从而补偿了欧洲局部水平散射的降低,这表明非线性水平散射对于重力波解析模拟的潜在重要性。对频谱能量的检查表明,需要对方案进行修改,以便更有效地衰减最小的分辨尺度下的不平衡的年龄变迁运动。提出了相应的经验修改,并证明可以正常工作。

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