论文标题

慢速持续混合在深渊

Slow persistent mixing in the abyss

论文作者

van Haren, Hans

论文摘要

关于量化湍流源相对较弱的区域,关于量化重悬于重悬的沉积物和沉积物分散的过程的过程非常重要。湍流可能会从大距离内人造深海开采活动中分散沉积物。为了量化在4000 m深度深度底部上方的湍流混合,从近乎赤道的东南太平洋(7°S,88°W)获得了高分辨率系泊温度传感器观测值。模型表明该地区赤道流动动力学,内部潮汐和表面近惯性运动的活性低。目前的观察结果表明,保守的温度差约为底部7至406米之间的0.012°C(以下简称为mab,简称为单位),这是绝热失效率的四分之一。浮力周期大约六个小时至一天的浮力周期非常弱,可以缓慢变化混合。计算出的湍流耗散速率值比开放海洋湍流交换的一半到一个数量级,远离底部的地形和表面边界。在深,湍流的倾覆中,在海洋中延伸至100 m高,并达到最低传感器。倾覆由内波剪切和 - 转化约束。观察到湍流惯性子量延伸到内波频带。相关的混合与底部摩擦过程无关,而与内波的破裂和近乎惯性的剪切有关。混合有助于长时间(小时)和高(超过100 mAb)悬浮沉积物的分散。

Knowledge about deep-ocean turbulent mixing and flow circulation above abyssal hilly plains is important to quantify processes for the modelling of resuspension and dispersal of sediments in areas where turbulence sources are expected to be relatively weak. Turbulence may disperse sediments from artificial deep-sea mining activities over large distances. To quantify turbulent mixing above the deep-ocean floor around 4000 m depth, high-resolution moored temperature sensor observations have been obtained from the near-equatorial southeast Pacific (7°S, 88°W). Models demonstrate low activity of equatorial flow dynamics, internal tides and surface near-inertial motions in the area. The present observations demonstrate a Conservative Temperature difference of about 0.012°C between 7 and 406 meter above the bottom (hereafter, mab, for short), which is a quarter of the adiabatic lapse rate. The very weakly stratified waters with buoyancy periods between about six hours and one day allow for slowly varying mixing. The calculated turbulence dissipation rate values are half to one order of magnitude larger than those from open-ocean turbulent exchange well away from bottom topography and surface boundaries. In the deep, turbulent overturns extend up to 100 m tall, in the ocean-interior, and also reach the lowest sensor. The overturns are governed by internal-wave-shear and -convection. The turbulence inertial subrange is observed to extend into the internal wave frequency band. The associated mixing is not related to bottom friction processes but to internal wave breaking and near-inertial shear. The mixing facilitates long (hours to day) and high (exceeding 100 mab) dispersal of suspended sediments.

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