The regenerator is a key component to Stirling cycle machine efficiency. Typical regenerators are of sintered fine wires or layers of fine-wire screens. Such porous materials are contained within solid-waH casings. Thermal energy exchange between the regenerator and the casing is important to cycle performance for the matrix and casing would not have the same axial temperature profile in an actual machine. Exchange from one to the other may allow shunting of thermal energy, reducing cycle efficiency. In this paper, temperature profiles within the near-wall region of the matrix are measured and thermal energy transport, termed thermal dispersion, is inferred. The data show how the wall affects thermal transport. Transport normal to the mean ...
AbstractThe present study involves the experimental investigation of heat transport due to the force...
Presented at the 16th International Cryocooler Conference, held May 17-20, 2008 in Atlanta, Georgia....
The irreversibility of heat conduction in porous media, its relation to effective thermal conductivi...
The regenerator is a key component to Stirling cycle machine efficiency. Typical regenerators are of...
Heat transfer through a porous medium can be significantly increased due to thermal dispersion. In t...
Thermal losses from hot to cold ends of a Stirling cycle regenerator as a result of streamwise condu...
Thermal losses from the hot end to the cold end of a Stirling cycle regenerator due to thermal dispe...
Nusselt number correlation equations are numerically derived by characterizing the heat transfer phe...
Different numerical methods can be applied to the analysis of the flow through the Stirling engine r...
Solid-fluid thermal interactions during unsteady flow in porous media play an important role in the ...
Polymer electrolyte fuel cells (PEFCs) and electrolyzers show promise in enabling renewable energy s...
This paper deals with the development of new Stirling regenerator as one of parallel-geometry regene...
The objective of this paper is to define empirical parameters for an initial thermal non-equilibrium...
Thermal dispersion is an important topic in the convective heat transfer in porous media. In order t...
Stirling cycle cryocoolers are used widely in military applications. The regenerator is the key elem...
AbstractThe present study involves the experimental investigation of heat transport due to the force...
Presented at the 16th International Cryocooler Conference, held May 17-20, 2008 in Atlanta, Georgia....
The irreversibility of heat conduction in porous media, its relation to effective thermal conductivi...
The regenerator is a key component to Stirling cycle machine efficiency. Typical regenerators are of...
Heat transfer through a porous medium can be significantly increased due to thermal dispersion. In t...
Thermal losses from hot to cold ends of a Stirling cycle regenerator as a result of streamwise condu...
Thermal losses from the hot end to the cold end of a Stirling cycle regenerator due to thermal dispe...
Nusselt number correlation equations are numerically derived by characterizing the heat transfer phe...
Different numerical methods can be applied to the analysis of the flow through the Stirling engine r...
Solid-fluid thermal interactions during unsteady flow in porous media play an important role in the ...
Polymer electrolyte fuel cells (PEFCs) and electrolyzers show promise in enabling renewable energy s...
This paper deals with the development of new Stirling regenerator as one of parallel-geometry regene...
The objective of this paper is to define empirical parameters for an initial thermal non-equilibrium...
Thermal dispersion is an important topic in the convective heat transfer in porous media. In order t...
Stirling cycle cryocoolers are used widely in military applications. The regenerator is the key elem...
AbstractThe present study involves the experimental investigation of heat transport due to the force...
Presented at the 16th International Cryocooler Conference, held May 17-20, 2008 in Atlanta, Georgia....
The irreversibility of heat conduction in porous media, its relation to effective thermal conductivi...