English

Whipped and mixed warm clouds in the deep sea

Fluid Dynamics 2026-01-09 v2 Atmospheric and Oceanic Physics

Abstract

Turbulence is indispensable to redistribute nutrients for all life forms larger than microbial, on land and in the ocean. Yet, the development of deep-sea turbulence was not studied in three dimensions to date. As a disproportionate laboratory, an array of nearly 3000 high-resolution temperature sensors had been installed for three years on the flat 2500-m deep bottom of the Mediterranean Sea. The time series from the half-cubic hectometer mooring-array allows for the creation of unique movies of deep-sea water motions. Although temperature differences are typically 0.001degrC, variable convection-turbulence is observed as expected from geothermal heating through the flat seafloor. During about 40% of the time, an additional turbulence, 3 times stronger in magnitude, is observed from slantwise advected warmer waters to pass in turbulent clouds. Besides turbulent clouds and seafloor heating, movies also reveal weakly turbulent interfacial-wave breakdown that commonly occurs in the open ocean far away from boundaries.

Keywords

Cite

@article{arxiv.2510.09470,
  title  = {Whipped and mixed warm clouds in the deep sea},
  author = {Hans van Haren},
  journal= {arXiv preprint arXiv:2510.09470},
  year   = {2026}
}

Comments

27 pages, 5 figures

R2 v1 2026-07-01T06:29:36.643Z