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Effects of explicit tidal forcing in an OGCM on the water-mass structure and circulation in the Indonesian throughflow region

机译:OGCM中明显的潮汐强迫对印度尼西亚通流区水质结构和环流的影响

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Tidal and internal gravity waves significantly contribute to ocean mixing processes, yet these small-scale processes have been parameterized traditionally by sub-grid scale mixing schemes. With free surface methods growing in popularity in z-coordinate models it offers the option to explicitly resolve tides in such models (although sub-grid scale processes associated with tides, such as internal wave breaking, even in eddy-resolving OGCMs still have to be parameterized) The eight most important constituents of the semidiurnal and diurnal tides have been implemented in a global version of the MOM3 GFDL ocean model. Tidal currents play an essential role in transport and mixing processes in the Indonesian Seas. The simulated long-term mean impact of tidal mixing on water-mass structures in the Indonesian Archipelago is compared with observations. Tidal rectification and associated mixing in the Indonesian Archipelago improve the agreement with observed long-term mean and seasonal pattern of sea-surface temperature (ΔSST ≈ 0.3 ℃) and heat fluxes (Δheat flux ≈ 20 W/m~2), sea-surface salinity (ΔSSS ≈ 0.15 psu) and subsurface properties including throughflow transports. However, regional differences exist and seem to be related to details of the bottom topography. Furthermore, as tides influence ocean properties via a model's mixing parameterization, rectification of the ocean state by tides strongly depends on the choice of sub-grid scale parameterizations. In the present model, this leads to excessive thermocline warming in the open ocean. Two examples with different mixing parameterizations plus tidal forcing are discussed.
机译:潮汐和内部重力波显着促进了海洋混合过程,但是这些小规模过程传统上已通过子网格规模混合方案进行了参数化。随着自由曲面方法在z坐标模型中的流行,它提供了显式解析此类模型中潮汐的选项(尽管与潮汐相关的子网格规模过程,例如内部波浪破碎,即使在解决涡流的OGCM中仍然必须参数化)半日潮和日潮的八个最重要的组成部分已在MOM3 GFDL海洋模型的全球版本中实现。潮流在印度尼西亚海域的运输和混合过程中起着至关重要的作用。将潮汐混合对印度尼西亚群岛水质结构的模拟长期平均影响进行了比较。印度尼西亚群岛的潮汐整流和相关混合改善了与观测到的海面温度(ΔSST≈0.3℃)和热通量(Δ热通量≈20 W / m〜2),海面的长期平均和季节性模式的一致性盐度(ΔSSS≈0.15 psu)和地下特性,包括通流传输。但是,存在区域差异,并且似乎与底部地形的细节有关。此外,由于潮汐会通过模型的混合参数化影响海洋特性,因此潮汐对海洋状态的校正很大程度上取决于子网格规模参数化的选择。在目前的模型中,这导致在大洋中过度的温跃层变暖。讨论了两个具有不同混合参数设置和潮汐强迫的示例。

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