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Simulation of the ocean surface mixed layer under the wave breaking

机译:破波作用下海面混合层的模拟

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A one-dimensional mixed-layer model, including a Mellor-Yamada level 2.5 turbulence closure scheme, was implemented to investigate the dynamical and thermal structures of the ocean surface mixed layer in the northern South China Sea. The turbulent kinetic energy released through wave breaking was incorporated into the model as a source of energy at the ocean surface, and the influence of the breaking waves on the mixed layer was studied. The numerical simulations show that the simulated SST is overestimated in summer without the breaking waves. However, the cooler SST is simulated when the effect of the breaking waves is considered, the corresponding discrepancy with the observed data decreases up to 20% and the MLD calculated averagely deepens 3.8 m. Owing to the wave-enhanced turbulence mixing in the summertime, the stratification at the bottom of the mixed layer was modified and the temperature gradient spread throughout the whole thermocline compared with the concentrated distribution without wave breaking.
机译:为了研究南海北部海表混合层的动力和热力结构,采用了包括Mellor-Yamada 2.5级湍流封闭方案的一维混合层模型。通过波浪破碎产生的湍动能被作为模型的能量来源纳入海洋模型,并研究了波浪破碎对混合层的影响。数值模拟表明,夏季没有海浪时,高估了海温。但是,当考虑到破碎波的影响时,将模拟较冷的SST,与观测数据的相应差异最多可降低20%,并且计算出的MLD平均加深3.8 m。由于夏季波状湍流混合,混合层底部的分层发生了变化,温度梯度分布在整个温跃层上,而没有波折的集中分布。

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