Preliminary results are presented from a moored, autonomous instrument measuring the upper ocean turbulent dissipation rate together with the surface gravity wave field. Observations are made in the area approximately 30 km southwest of Bergen, Norway between 28 and 30 November 2012, at about 8 m from the surface in 20 m deep water. The platform is the top element of a bottom-anchored mooring line, and moves in response to currents and waves. Shear probes mounted on the nose of the platform allow measurements of dissipation rate of turbulent kinetic energy, ε, in the frequency range between 1 to 20 Hz in which shear probes are less contaminated by the surface gravity wave disturbances and platform motions. A high-resolution pressure sensor ...
We demonstrate high-resolution measurements of upper ocean flow and turbulence using a Lagrangian dr...
Two field investigations in an exposed shallow area outside Lofoten, western Norway, were conducted ...
The ocean surface is a complex boundary where air-sea fluxes of mass, momentum and energy take place...
Preliminary results are presented from a moored, autonomous instrument measuring the upper ocean tur...
AbstractPreliminary results are presented from a moored, autonomous instrument measuring the upper o...
An internally recording, autonomous instrument has been tested for measurements of ocean turbulence ...
Observations of turbulent dissipation rates measured by two independent instruments are compared wit...
We demonstrate high-resolution measurements of upper ocean flow and turbulence using a Lagrangian dr...
Observations were made in the near-surface layer, at about 8 m depth in 132 m deep water off the coa...
An internally recording, autonomous instrument has been tested for measurements of ocean turbulence ...
AbstractWe demonstrate high-resolution measurements of upper ocean flow and turbulence using a Lagra...
Upper-ocean turbulence is central to the exchanges of heat, momentum, and gases across the air–sea i...
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...
Characterizing and quantifying vertical exchange processes is essential for understanding physical a...
We demonstrate high-resolution measurements of upper ocean flow and turbulence using a Lagrangian dr...
Two field investigations in an exposed shallow area outside Lofoten, western Norway, were conducted ...
The ocean surface is a complex boundary where air-sea fluxes of mass, momentum and energy take place...
Preliminary results are presented from a moored, autonomous instrument measuring the upper ocean tur...
AbstractPreliminary results are presented from a moored, autonomous instrument measuring the upper o...
An internally recording, autonomous instrument has been tested for measurements of ocean turbulence ...
Observations of turbulent dissipation rates measured by two independent instruments are compared wit...
We demonstrate high-resolution measurements of upper ocean flow and turbulence using a Lagrangian dr...
Observations were made in the near-surface layer, at about 8 m depth in 132 m deep water off the coa...
An internally recording, autonomous instrument has been tested for measurements of ocean turbulence ...
AbstractWe demonstrate high-resolution measurements of upper ocean flow and turbulence using a Lagra...
Upper-ocean turbulence is central to the exchanges of heat, momentum, and gases across the air–sea i...
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...
Characterizing and quantifying vertical exchange processes is essential for understanding physical a...
We demonstrate high-resolution measurements of upper ocean flow and turbulence using a Lagrangian dr...
Two field investigations in an exposed shallow area outside Lofoten, western Norway, were conducted ...
The ocean surface is a complex boundary where air-sea fluxes of mass, momentum and energy take place...