We present an analysis of turbulent kinetic energy dissipation rates in the upper ocean using in situ measurements collected by a coherent Doppler sonar in the Labrador Sea during summer 2004. The sonar recorded horizontal velocity fluctuations of the upper 2 m with an uncommonly small spatial resolution of 0.8 cm, allowing direct calculations of wavenumber spectra and the application of Kolmogorov theory to obtain turbulent kinetic energy dissipation rates for the first time in this area. The project presented a unique opportunity for the study of air–sea exchange during a phytoplankton bloom, being the first time a specialized air–sea interaction spar buoy was deployed during such particular event. An additional uniqueness of this experim...
The vertical distribution of the turbulent energy dissipation rate in the wind-generated wave layer ...
Observations of turbulent dissipation rates measured by two independent instruments are compared wit...
Increased knowledge about wave attenuation processes in sea ice, and hence atmosphere-wave-ice-ocean...
A study of the turbulent transfer of properties across the ocean surface and the dissipation of the ...
We compare estimates of the turbulent dissipation rate, , obtained independently from coincident me...
The rate of dissipation of turbulent kinetic energy is estimated using Seaglider observations of ver...
The rate of dissipation of turbulent kinetic energy has been measured with airfoil probes mounted on...
Upper-ocean turbulence is central to the exchanges of heat, momentum, and gases across the air–sea i...
Turbulent mixing is an important process controlling the descent rate, water mass modification, and ...
The variability of the turbulent kinetic energy dissipation due to internal waves is quantified usin...
A free-falling instrument was used in coastal waters to measure turbulent velocity fluctuations, tem...
Observations of turbulent kinetic energy (TKE) dynamics in the ocean surface boundary layer are pre-...
Upper-ocean turbulence is central to the exchanges of heat, momentum, and gases across the air–sea i...
15 páginas, 4 tablas, 8 figurasThe variability of the turbulent kinetic energy dissipation due to in...
Increased knowledge about energy dissipation processes around colliding ice floes is important for i...
The vertical distribution of the turbulent energy dissipation rate in the wind-generated wave layer ...
Observations of turbulent dissipation rates measured by two independent instruments are compared wit...
Increased knowledge about wave attenuation processes in sea ice, and hence atmosphere-wave-ice-ocean...
A study of the turbulent transfer of properties across the ocean surface and the dissipation of the ...
We compare estimates of the turbulent dissipation rate, , obtained independently from coincident me...
The rate of dissipation of turbulent kinetic energy is estimated using Seaglider observations of ver...
The rate of dissipation of turbulent kinetic energy has been measured with airfoil probes mounted on...
Upper-ocean turbulence is central to the exchanges of heat, momentum, and gases across the air–sea i...
Turbulent mixing is an important process controlling the descent rate, water mass modification, and ...
The variability of the turbulent kinetic energy dissipation due to internal waves is quantified usin...
A free-falling instrument was used in coastal waters to measure turbulent velocity fluctuations, tem...
Observations of turbulent kinetic energy (TKE) dynamics in the ocean surface boundary layer are pre-...
Upper-ocean turbulence is central to the exchanges of heat, momentum, and gases across the air–sea i...
15 páginas, 4 tablas, 8 figurasThe variability of the turbulent kinetic energy dissipation due to in...
Increased knowledge about energy dissipation processes around colliding ice floes is important for i...
The vertical distribution of the turbulent energy dissipation rate in the wind-generated wave layer ...
Observations of turbulent dissipation rates measured by two independent instruments are compared wit...
Increased knowledge about wave attenuation processes in sea ice, and hence atmosphere-wave-ice-ocean...