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首页> 外文期刊>Journal of Physical Oceanography >Turbulent Mixing in the Red Sea Outflow Plume from a High-Resolution Nonhydrostatic Model
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Turbulent Mixing in the Red Sea Outflow Plume from a High-Resolution Nonhydrostatic Model

机译:高分辨率非静水模型在红海流出羽流中的湍流混合

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摘要

Given the motivation that overflow processes, which supply source waters for most of the deep and intermediate water masses in the ocean, pose significant numerical and dynamical challenges for ocean general circulation models, an intercomparison study is conducted between field data collected in the Red Sea overflow and a high-resolution, nonhydrostatic process model. The investigation is focused on the part of the outflow that flows along a long narrow channel, referred to as the "northern channel," that naturally restricts motion in the lateral direction such that the use of a two-dimensional model provides a reasonable approximation to the dynamics. This channel carries about two-thirds of the total Red Sea overflow transport, after the overflow splits into two branches in the western Gulf of Aden. The evolution of the overflow in the numerical simulations can be characterized in two phases: the first phase is highly time dependent, during which the density front associated with the overflow propagates along the channel. The second phase corresponds to that of a statistically steady state. The primary accomplishment of this study is that the model adequately captures the general characteristics of the system: (ⅰ) the gradual thickening of the overflow with downstream distance, (ⅱ) the advection of high salinity and temperature signals at the bottom along the channel with little dilution, and (ⅲ) ambient water masses sandwiched between the overflow and surface mixed layer. To quantify mixing of the overflow with the ambient water masses, an entrainment parameter is determined from the transport increase along the slope and is expressed explicitly as a function of mean slope angle. Bulk Richardson numbers are estimated both from data and model and are related to the entrainment parameter. The range of entrainment parameter and its functional dependence on bulk Richardson number in this study are found to be in reasonable agreement with those reported from various laboratory experiments and that based on measurements of the Mediterranean overflow. The results reveal a complex dynamical interaction between shear-induced mixing and internal waves and illustrate the high computational and modeling requirements for numerical simulation of overflows to capture (at least in part) turbulent transports explicitly.
机译:考虑到溢流过程为海洋中大多数深水和中间水团提供水源的动力,对海洋总体环流模型提出了重大的数值和动力学挑战,因此在红海溢流中收集的田间数据之间进行了比较研究以及高分辨率,非静液压的过程模型。研究的重点是流出的流体沿着长而狭窄的通道(称为“北通道”)流动,该通道自然地限制了横向运动,因此使用二维模型可以合理地估算出动态。在溢流分裂成亚丁湾西部的两个分支之后,该河道承载着红海溢流总量的三分之二。数值模拟中溢流的演变可以分为两个阶段:第一个阶段与时间高度相关,在此期间,与溢流相关的密度前沿沿通道传播。第二阶段对应于统计稳定状态。这项研究的主要成就是,该模型充分捕捉了系统的一般特征:(ⅰ)随着下游距离的逐渐增加溢流;(ⅱ)高盐度和温度信号沿通道底部平流。几乎没有稀释,并且(ⅲ)周围的水团夹在溢流和表面混合层之间。为了量化溢流与周围水团的混合,从沿斜坡的运输增量中确定夹带参数,并将其明确表示为平均倾斜角的函数。大量的理查森数是根据数据和模型估算的,并且与夹带参数有关。发现该研究中的夹带参数范围及其对总体理查森数的功能依赖性与各种实验室实验报告的结果以及基于地中海溢流测量值的结果合理吻合。结果揭示了剪切引起的混合与内部波之间复杂的动力学相互作用,并说明了对溢流进行数值模拟以明确捕获(至少部分地)湍流传输的高计算和建模要求。

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