The prediction of the entropy generation rate in laminar shear layers is treated as steady, even in the presence of high levels of free stream turbulence. Here we highlight the deficiencies of this approach by quantifying the magnitude of entropy generation rate fluctuations in the laminar boundary layer subjected to free stream turbulence. We find fluctuation levels in excess of 100% in the near wall region, thereby indicating the need to account for the unsteadiness in laminar boundary layers subjected to free stream turbulence
The local (pointwise) entropy generation rate per unit volume S''' is a key to improving many energy...
By employing results of direct numerical simulations, it is possible to examine entropy generation d...
This paper investigates the velocity fluctuations in the free stream above an incompressible turbule...
The prediction of the entropy generation rate in laminar shear layers is treated as steady, even in ...
Abstract: The prediction of the entropy generation rate in laminar shear layers is treated as steady...
In an earlier paper in Entropy [1] we hypothesized that the entropy generation rate is the driving f...
Prediction of thermodynamic loss in transitional boundary layers is typically based on time-averaged...
Conditionally-sampled boundary layer data for an accelerating transitional boundary layer have been ...
Conditionally-sampled boundary layer data for an accelerating transitional boundary layer have been ...
The results of the computation of entropy generation rates through the dissipation of ordered region...
This paper documents a numerical study on entropy generation in zero-pressure gradient, laminar boun...
The need to quantify entropy generation rates is critical to optimizing the performance of many engi...
As a first step towards understanding the role of free-stream turbulence in laminar– turbulent trans...
The growth of laminar boundary-layer streaks caused by free-stream turbulence encountering a flat pl...
As a first step towards understanding the role of free-stream turbulence in laminar–turbulent transi...
The local (pointwise) entropy generation rate per unit volume S''' is a key to improving many energy...
By employing results of direct numerical simulations, it is possible to examine entropy generation d...
This paper investigates the velocity fluctuations in the free stream above an incompressible turbule...
The prediction of the entropy generation rate in laminar shear layers is treated as steady, even in ...
Abstract: The prediction of the entropy generation rate in laminar shear layers is treated as steady...
In an earlier paper in Entropy [1] we hypothesized that the entropy generation rate is the driving f...
Prediction of thermodynamic loss in transitional boundary layers is typically based on time-averaged...
Conditionally-sampled boundary layer data for an accelerating transitional boundary layer have been ...
Conditionally-sampled boundary layer data for an accelerating transitional boundary layer have been ...
The results of the computation of entropy generation rates through the dissipation of ordered region...
This paper documents a numerical study on entropy generation in zero-pressure gradient, laminar boun...
The need to quantify entropy generation rates is critical to optimizing the performance of many engi...
As a first step towards understanding the role of free-stream turbulence in laminar– turbulent trans...
The growth of laminar boundary-layer streaks caused by free-stream turbulence encountering a flat pl...
As a first step towards understanding the role of free-stream turbulence in laminar–turbulent transi...
The local (pointwise) entropy generation rate per unit volume S''' is a key to improving many energy...
By employing results of direct numerical simulations, it is possible to examine entropy generation d...
This paper investigates the velocity fluctuations in the free stream above an incompressible turbule...