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The effect of wave-induced turbulence on the ocean mixed layer during tropical cyclones: field observations on the Australian North-West Shelf

机译:热带气旋期间波浪引起的湍流对海洋混合层的影响:澳大利亚西北陆架的现场观测

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摘要

Field observations of water temperature on the Australian North-West Shelf (Eastern Indian Ocean) with the support of numerical simulations are used to demonstrate that the injection of turbulence generated by the wave orbital motion substantially contributes to the mixing of the upper ocean. Measurements also show that a considerable deepening of the mixed layer occurs during tropical cyclones, when the production of wave-induced turbulence kinetic energy overcomes the contribution of the current-generated shear turbulence. Despite a significant contribution to the deepening of the mixed layer, the effect of a background current and atmospheric forcing are not on their own capable of justifying the observed deepening of the mixed layer through most of the water column. Furthermore, variations of a normally shallow mixed layer depth are observed within a relatively short time scale of approximately 10 hours after the intensification of wave activity and vanish soon after the decay of storm surface waves. This rapid development tends also to exclude any significant contribution by wave breaking, as small rates of vertical diffusivity for wave breaking-induced turbulence would require longer time scales to influence the depth of the mixed layer.
机译:在数值模拟的支持下,对澳大利亚西北大陆架(东印度洋)上水温的野外观测被用来证明,由波浪轨道运动产生的湍流注入实质上有助于上层海洋的混合。测量还表明,在热带气旋中,当波浪引起的湍流动能的产生克服了电流产生的剪切湍流的影响时,混合层就会发生相当大的加深。尽管对混合层的加深做出了重大贡献,但背景电流和大气强迫的影响本身并不能证明通过大多数水柱观察到的混合层的加深是合理的。此外,在波浪活动性增强后约10小时的较短时间内,观察到正常较浅混合层深度的变化,而在风暴面波衰减后不久消失。这种快速发展也趋向于排除波浪破碎的任何重大影响,因为对于波浪破碎引起的湍流,垂直扩散率很小,将需要更长的时间尺度来影响混合层的深度。

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