Heat transfer through a porous medium can be significantly increased due to thermal dispersion. In the application of a Stirling regenerator, it may degrade the performance of a Stirling cycle machine due to thermal losses from the hot to the cold end of the regenerator. In the current program, a porous matrix consisting of stacked wire screens with a porosity of 90% is constructed and operated at Reynolds numbers that simulate flows in Stirling engine regenerators. Two experiments are conducted to determine thermal dispersion through the porous medium. One is to measure instantaneous velocity and temperature fields in the regenerator matrix exit flow under oscillatory flow conditions. Turbulent thermal energy transport quantities are calcu...
The regenerator of a Stirling engine is widely studied both numerically and experimentally because i...
The Stirling engine design process is mostly focused on the study of the engine regenerator, whose ...
Solid-fluid thermal interactions during unsteady flow in porous media play an important role in the ...
Heat transfer through a porous medium can be significantly increased due to thermal dispersion. In t...
Thermal losses from the hot end to the cold end of a Stirling cycle regenerator due to thermal dispe...
The regenerator is a key component to Stirling cycle machine efficiency. Typical regenerators are of...
Thermal losses from hot to cold ends of a Stirling cycle regenerator as a result of streamwise condu...
Different numerical methods can be applied to the analysis of the flow through the Stirling engine r...
Nusselt number correlation equations are numerically derived by characterizing the heat transfer phe...
This paper presents both preliminary experimental and numerical studies of pressure drop and heat tr...
In this paper, a thermo-fluid dynamic 3-D numerical model of the air flow through the stacked woven ...
An experiment was designed and carried out on the fundamental, but poorly understood problem of osci...
The regenerator of a Stirling engine is widely studied both numerically and experimentally because i...
The Stirling engine design process is mostly focused on the study of the engine regenerator, whose ...
Solid-fluid thermal interactions during unsteady flow in porous media play an important role in the ...
Heat transfer through a porous medium can be significantly increased due to thermal dispersion. In t...
Thermal losses from the hot end to the cold end of a Stirling cycle regenerator due to thermal dispe...
The regenerator is a key component to Stirling cycle machine efficiency. Typical regenerators are of...
Thermal losses from hot to cold ends of a Stirling cycle regenerator as a result of streamwise condu...
Different numerical methods can be applied to the analysis of the flow through the Stirling engine r...
Nusselt number correlation equations are numerically derived by characterizing the heat transfer phe...
This paper presents both preliminary experimental and numerical studies of pressure drop and heat tr...
In this paper, a thermo-fluid dynamic 3-D numerical model of the air flow through the stacked woven ...
An experiment was designed and carried out on the fundamental, but poorly understood problem of osci...
The regenerator of a Stirling engine is widely studied both numerically and experimentally because i...
The Stirling engine design process is mostly focused on the study of the engine regenerator, whose ...
Solid-fluid thermal interactions during unsteady flow in porous media play an important role in the ...