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Mixed layer deepening due to wind-induced shear-driven turbulence and scaling of the deepening rate in the stratified ocean

机译:风致切变驱动湍流引起的混合层加深以及分层海洋中加深速率的缩放

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摘要

Wind-induced mixing forms the surface mixed layer (ML) above the stratified interior oceans. The ML depth (MLD), a key quantity for several upper ocean processes such as the air-sea interaction and primary production of phytoplankton biomass, is often scaled as U_*/(Nf)~(1/2), where U_* is the friction velocity, N is the Brunt-Vaisala frequency, and f is the Coriolis parameter. Here, we performed large-eddy simulations (LESs) to evaluate this scaling. It was found that the ML deepens rapidly until one-half inertial period (0.5T_f) by which the MLD becomes 1.6 - 1.7U_*/(Nf)~(1/2). Thereafter, the ML deepening slows down but never stops, and the MLD keeps increasing gradually. The MLDs at T_f, 1.5T_f, and 5T_f become greater than those at 0.5T_f by 6.2 %, 16 %, and 40 %, respectively. Therefore, time-dependent scaling of the MLD is necessary for more quantitative estimates than the classical theory. LESs performed with several U_*, N, and f showed that the deepening rate of the ML depends on the Rossby number and the Froude number. The present study proposes time-dependent scalings of the ML deepening rate and the MLD as a function of the Rossby number and the Froude number, which cover the classical scaling but can be extended even after 0.5T_f.
机译:风引起的混合形成了分层内部海洋之上的表面混合层(ML)。 ML深度(MLD)是几种上层海洋过程(如海-气相互作用和浮游植物生物量的初级生产)的关键量,通常缩放为U _ * /(Nf)〜(1/2),其中U_ *为摩擦速度,N是Brunt-Vaisala频率,f是科里奥利参数。在这里,我们执行了大涡模拟(LESs)来评估这种缩放比例。发现ML迅速加深直至MLD变为1.6-1.7U _ * /(Nf)〜(1/2)的一半惯性周期(0.5T_f)。此后,ML的加深速度减慢但从未停止,MLD逐渐增加。 T_f,1.5T_f和5T_f处的MLD分别比0.5T_f处的MLD大6.2%,16%和40%。因此,与经典理论相比,MLD随时间变化的标度对于更多的定量估计是必要的。用几个U _ *,N和f进行的LESs表明ML的加深率取决于Rossby数和Froude数。本研究提出了ML加深速率和MLD随时间变化的标度,它是Rossby数和Froude数的函数,涵盖了经典的标度,但即使在0.5T_f之后也可以扩展。

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