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Comparing the Performance of Turbulent Kinetic Energy and K-Profile Parameterization Vertical Parameterization Schemes over the Tropical Indian Ocean

机译:比较热带印度洋湍流动能和K型材参数化垂直参数化方案的性能

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摘要

The performance of vertical parameterization schemes, namely, turbulent kinetic energy (TKE) and K-profile parameterization (KPP), is evaluated over the domain [30E-120E; 20S-30N] in the Indian Ocean using the Nucleus for European Modeling of the Ocean (NEMO) regional model. The surface and sub-surface hydrography and mixed layer depth (MLD) of the simulations using TKE and KPP schemes have been compared. The KPP scheme produces higher bias (similar to 0.5 degrees C) of sea surface temperature (SST) in monsoon and post-monsoon seasons, which reduces on using the TKE scheme. The maximum surface salinity difference (0.45 psu) between TKE and KPP simulations is obtained over the head Bay of Bengal (BoB) in the post-monsoon months. The KPP scheme also overestimates MLD of the region. Barring highly convective regions as well as regions marked with very low and rapidly changing salinity, the TKE scheme performs better than KPP scheme in simulating the hydrography and MLD of the region. The differences between TKE and KPP simulations in the vertical stability and mixing are studied using buoyancy frequency, vertical shear of horizontal currents and energy required for mixing as quantifiers. The mixed layer heat budget analysis explains seasonal variability of SST and differences in vertical mixing parameterizations.
机译:垂直参数化方案的性能,即湍流动能(TKE)和k型材参数化(KPP)在域上进行评估[30E-120E; 20S-30N]在印度洋中使用核心欧洲建模的海洋(NEMO)区域模型。使用TKE和KPP方案进行了模拟的表面和亚表面水质和混合层深度(MLD)。 KPP方案在季风和季风季节的海表面温度(SST)的偏差(类似于0.5摄氏度)产生,从而减少了使用TKE方案。 TKE和KPP模拟之间的最大表面盐度差异(0.45psu)在季风月后孟加拉(BOB)的头部湾获得。 KPP方案还高估了该地区的MLD。禁止高度对流的区域以及标记为非常低且良好的盐度的区域,TKE方案在模拟该区域的水力学和MLD时表现优于KPP方案。使用浮力频率,水平电流垂直剪切和混合作为量子的垂直电流和能量的垂直剪切进行垂直稳定性和混合中的TKE和KPP模拟之间的差异。混合层热预算分析解释了SST的季节性变化和垂直混合参数化的差异。

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