This work focuses on the predictions of turbulent transition in oscillatory flow subjected to temperature gradients, which often occurs within heat exchangers of thermoacoustic devices. A two-dimensional computational fluid dynamics (CFD) model was developed in ANSYS FLUENT and validated using the earlier experimental data. Four drive ratios (defined as maximum pressure amplitude to mean pressure) were investigated: 0.30%, 0.45%, 0.65% and 0.83%. It has been found that the introduction of the turbulence model at a drive ratio as low as 0.45% improves the predictions of flow structure compared to experiments, which indicates that turbulent transition may occur at much smaller flow amplitudes than previously thought. In the current investigat...
Heat exchangers are considered to be critical components of thermoacoustic systems and their appropr...
Power can be converted with high efficiently between thermal energy and mechanical (acoustic) energy...
This paper addresses the issues of heat transfer in oscillatory flow conditions, which are typically...
Oscillatory flows past solid bodies are a feature typical for thermoacoustic systems. Understanding...
Oscillatory flows past solid bodies are a feature typical for thermoacoustic systems. Understanding ...
Oscillatory flow condition is a fluid flow condition that is less understood especially with the pre...
Science.Research.Pannonia. 25Energy conversion based on the interaction of acoustic fluctuations in ...
The design of appropriate heat exchangers is an essential requirement for the development of next ge...
Thermoacoustic technologies rely on a direct power conversion between acoustic and thermal energies ...
Thermoacoustic devices are built based on interactions between sound wave and a solid boundary, with...
Thermoacoustic devices are built based on interactions between sound wave and a solid boundary, with...
Thermoacoustic devices are built based on interactions between sound wave and a solid boundary, with...
Thermoacoustic systems rely on conversion between thermal and acoustic (i.e. mechanical) forms of en...
Thermoacoustic system uses green technology to convert heat into electrical power or vice versa. The...
Heat exchangers are considered to be critical components of thermoacoustic systems and their appropr...
Heat exchangers are considered to be critical components of thermoacoustic systems and their appropr...
Power can be converted with high efficiently between thermal energy and mechanical (acoustic) energy...
This paper addresses the issues of heat transfer in oscillatory flow conditions, which are typically...
Oscillatory flows past solid bodies are a feature typical for thermoacoustic systems. Understanding...
Oscillatory flows past solid bodies are a feature typical for thermoacoustic systems. Understanding ...
Oscillatory flow condition is a fluid flow condition that is less understood especially with the pre...
Science.Research.Pannonia. 25Energy conversion based on the interaction of acoustic fluctuations in ...
The design of appropriate heat exchangers is an essential requirement for the development of next ge...
Thermoacoustic technologies rely on a direct power conversion between acoustic and thermal energies ...
Thermoacoustic devices are built based on interactions between sound wave and a solid boundary, with...
Thermoacoustic devices are built based on interactions between sound wave and a solid boundary, with...
Thermoacoustic devices are built based on interactions between sound wave and a solid boundary, with...
Thermoacoustic systems rely on conversion between thermal and acoustic (i.e. mechanical) forms of en...
Thermoacoustic system uses green technology to convert heat into electrical power or vice versa. The...
Heat exchangers are considered to be critical components of thermoacoustic systems and their appropr...
Heat exchangers are considered to be critical components of thermoacoustic systems and their appropr...
Power can be converted with high efficiently between thermal energy and mechanical (acoustic) energy...
This paper addresses the issues of heat transfer in oscillatory flow conditions, which are typically...