We present a new, simple and physically motivated parameterization, based on the ratio of Thorpe and Ozmidov scales, for the irreversible turbulent flux coefficient ΓM=M/ϵ , i.e. the ratio of the irreversible rate M at which the background potential energy increases in a stratified flow due to macroscopic motions to the dissipation rate of turbulent kinetic energy ϵ . Our parameterization covers all three key phases (crucially, in time) of a shear-induced stratified turbulence life cycle: the initial, ‘hot’ growing phase, the intermediate energetically forced phase and the final ‘cold’ fossilization decaying phase. Covering all three phases allows us to highlight the importance of the intermediate one, to which we refer as the ‘Goldilocks’ ...
Turbulent mixing has an important influence on many physical processes in the ocean. For example, th...
International audienceIn studies of ocean mixing, it is generally assumed that small-scale turbulent...
We investigate the time evolution of mixing in turbulent overturns, using a combination of direct nu...
Turbulent mixing plays a major role in enabling the large scale ocean circulation. The accuracy of m...
Author Posting. © American Meteorological Society, 2018. This article is posted here by permission ...
Turbulent mixing induced by breaking internal waves is key to the ocean circulation and global trace...
The time evolution of mixing in turbulent overturns is investigated using a combination of direct nu...
In studies of ocean mixing, it is generally assumed that small-scale turbulent overturns lose 15-20 ...
Using observations of an energetic shear instability (Seim and Gregg, 1994), examines the energy bud...
The time evolution of mixing in turbulent overturns is investigated using a combination of direct nu...
We investigate the time evolution of mixing in turbulent overturns, using a combination of direct nu...
The efficiency of the conversion of mechanical to potential energy, often expressed as the flux Rich...
Direct numerical simulations of the time evolution of homogeneous stably stratified shear flows have...
Shear instability is the dominant mechanism for converting fluid motion to mixing in the stratified ...
This paper uses the energetics framework developed by Scotti and White to provide a critical assessm...
Turbulent mixing has an important influence on many physical processes in the ocean. For example, th...
International audienceIn studies of ocean mixing, it is generally assumed that small-scale turbulent...
We investigate the time evolution of mixing in turbulent overturns, using a combination of direct nu...
Turbulent mixing plays a major role in enabling the large scale ocean circulation. The accuracy of m...
Author Posting. © American Meteorological Society, 2018. This article is posted here by permission ...
Turbulent mixing induced by breaking internal waves is key to the ocean circulation and global trace...
The time evolution of mixing in turbulent overturns is investigated using a combination of direct nu...
In studies of ocean mixing, it is generally assumed that small-scale turbulent overturns lose 15-20 ...
Using observations of an energetic shear instability (Seim and Gregg, 1994), examines the energy bud...
The time evolution of mixing in turbulent overturns is investigated using a combination of direct nu...
We investigate the time evolution of mixing in turbulent overturns, using a combination of direct nu...
The efficiency of the conversion of mechanical to potential energy, often expressed as the flux Rich...
Direct numerical simulations of the time evolution of homogeneous stably stratified shear flows have...
Shear instability is the dominant mechanism for converting fluid motion to mixing in the stratified ...
This paper uses the energetics framework developed by Scotti and White to provide a critical assessm...
Turbulent mixing has an important influence on many physical processes in the ocean. For example, th...
International audienceIn studies of ocean mixing, it is generally assumed that small-scale turbulent...
We investigate the time evolution of mixing in turbulent overturns, using a combination of direct nu...