The mixing layer of Loch Ness
- 13 November 1980
- journal article
- research article
- Published by Cambridge University Press (CUP) in Journal of Fluid Mechanics
- Vol. 101 (4) , 687-703
- https://doi.org/10.1017/s0022112080001875
Abstract
Measurements of the thermal and velocity structure of the near-surface mixing layer of a freshwater lake in moderate wind conditions from fixed or mobile arrays of sensors reveal large-scale coherent structures consisting of narrow fronts across which both the temperature and the horizontal component of the current increase. These fronts are generally transverse to the wind direction and are inclined to the vertical, and appear to be similar to fronts, reported as temperature ‘ramps’, in the near-surface atmospheric boundary layer. The time derivatives of the temperature are skewed in a sense consistent with observations in laboratory and atmospheric boundary layers, and of a magnitude consistent with measurements in the latter. Evidence is presented to show that bubbles generated by breaking waves are carried down in the large-scale pattern of flow associated with the fronts in the mixing layer. The presence of a Langmuir circulation associated with wind rows has not been established in these experiments. The relevance of the observations to the ocean mixing layer is discussed.Keywords
This publication has 14 references indexed in Scilit:
- Features of the organized motion in the atmospheric surface layerJournal of Geophysical Research: Oceans, 1980
- Bubbles and breaking wavesNature, 1980
- Observations of a surface mixed layerDeep Sea Research Part A. Oceanographic Research Papers, 1979
- The turbulent structure of the bottom boundary layer in a tidal currentGeophysical Journal International, 1979
- Bubbles in a freshwater lakeNature, 1979
- Catastrophic events in a surface mixed layerNature, 1978
- Billows in Loch NessDeep Sea Research, 1977
- On the evolution of the system of wind drift currents and Langmuir circulations in the ocean. Part 2. Structure of the Langmuir vorticesJournal of Fluid Mechanics, 1977
- Mixing in upper layer of a lake during heating cycleNature, 1977
- Hydrodynamic patterns in lotic intertidal sands and their bioclimatological implicationsMarine Biology, 1972