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Impact of Parameterized Internal Wave Drag on the Semidiurnal Energy Balance in a Global Ocean Circulation Model

机译:全球海洋环流模型中参数化内部波浪阻力对半日能量平衡的影响

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The effects of a parameterized linear internal wave drag on the semidiurnal barotropic and baroclinic energetics of a realistically forced, three-dimensional global ocean model are analyzed. Although the main purpose of the parameterization is to improve the surface tides, it also influences the internal tides. The relatively coarse resolution of the model of similar to 8 km only permits the generation and propagation of the first three vertical modes. Hence, this wave drag parameterization represents the energy conversion to and the subsequent breaking of the unresolved high modes. The total tidal energy input and the spatial distribution of the barotropic energy loss agree with the Ocean Topography Experiment (TOPEX)/Poseidon (TPXO) tidal inversion model. The wave drag overestimates the high-mode conversion at ocean ridges as measured against regional high-resolution models. The wave drag also damps the low-mode internal tides as they propagate away from their generation sites. Hence, it can be considered a scattering parameterization, causing more than 50% of the deep-water dissipation of the internal tides. In the near field, most of the baroclinic dissipation is attributed to viscous and numerical dissipation. The far-field decay of the simulated internal tides is in agreement with satellite altimetry and falls within the broad range of Argo-inferred dissipation rates. In the simulation, about 12% of the semidiurnal internal tide energy generated in deep water reaches the continental margins.
机译:分析了参数化线性内部波浪阻力对逼真的三维三维全球海洋模型的半日正压和斜压能量的影响。尽管参数化的主要目的是改善表面潮汐,但它也影响内部潮汐。该模型的相对粗略的分辨率(类似于8 km)仅允许生成和传播前三个垂直模式。因此,该波阻力参数化表示未转换的高模的能量转换和随后的破坏。总潮汐能量输入和正压能量损失的空间分布与海洋地形实验(TOPEX)/波塞冬(TPXO)潮汐反演模型一致。与区域高分辨率模型相比,波浪阻力高估了海脊的高模转换。当低模内部潮汐远离它们的发源地传播时,波浪阻力还可以抑制它们。因此,可以将其视为散射参数化,从而导致内部潮汐的深水耗散超过50%。在近场中,大部分斜压耗散归因于粘性和数值耗散。模拟内部潮汐的远场衰减与卫星测高仪一致,并且在Argo推定的大范围耗散率范围内。在模拟中,深水中产生的半日内潮汐能量的大约12%到达了大陆边缘。

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