College of Earth, Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, Oregon 97330-5503, USA; email:
Ann Rev Mar Sci. 2021 Jan;13:201-226. doi: 10.1146/annurev-marine-031920-122846. Epub 2020 Jun 29.
Over the past several decades, there has developed a community-wide appreciation for the importance of mixing at the smallest scales to geophysical fluid dynamics on all scales. This appreciation has spawned greater participation in the investigation of ocean mixing and new ways to measure it. These are welcome developments given the tremendous separation in scales between the basins, [Formula: see text]) m, and the turbulence, [Formula: see text]) m, and the fact that turbulence that leads to thermodynamically irreversible mixing in high-Reynolds-number geophysical flows varies by at least eight orders of magnitude in both space and time. In many cases, it is difficult to separate the dependencies because measurements are sparse, also in both space and time. Comprehensive shipboard turbulence profiling experiments supplemented by Doppler sonar current measurements provide detailed observations of the evolution of the vertical structure of upper-ocean turbulence on timescales of minutes to weeks. Recent technical developments now permit measurements of turbulence in the ocean, at least at a few locations, for extended periods. This review summarizes recent and classic results in the context of our expanding knowledge of the temporal variability of ocean mixing, beginning with a discussion of the timescales of the turbulence itself (seconds to minutes) and how turbulence-enhanced mixing varies over hours, days, tidal cycles, monsoons, seasons, and El Niño-Southern Oscillation timescales (years).
在过去的几十年中,人们已经普遍认识到在最小尺度上混合对于所有尺度的地球物理流体动力学的重要性。这种认识促使更多的人参与到海洋混合的研究中,并提出了新的测量方法。鉴于盆地之间的巨大尺度分离([Formula: see text])m,以及导致高雷诺数地球物理流动中热力学不可逆混合的湍流([Formula: see text])m,这些都是受欢迎的发展,而湍流在空间和时间上至少相差八个数量级。在许多情况下,由于测量稀疏,空间和时间都很稀疏,因此很难分离这些依赖性。综合的船舶湍流剖面实验辅以多普勒声纳海流测量,提供了海洋上混合的垂直结构演变的详细观测,时间尺度从分钟到数周。最近的技术发展现在允许在海洋中进行湍流测量,至少在少数几个位置可以进行长时间的测量。本综述在我们不断扩大的海洋混合时间可变性知识的背景下总结了最近和经典的结果,首先讨论了湍流本身的时间尺度(秒到分钟)以及湍流增强混合如何随时间变化,时间范围为数小时、数天、潮汐周期、季风、季节和厄尔尼诺-南方涛动时间尺度(数年)。