Heat exchangers under oscillatory flow conditions constitute a critical component of thermoacoustic engines and coolers for which effective design methodologies are not yet available. In this study, the thermal and pressure drop performance of compact Tube Heat Exchanger (T-HEX) under oscillatory flow conditions is investigated using experimental and numerical methods. A standing wave experimental set-up, driven by the Q-drive linear alternator, and a measurement technique were developed to measure the temperature and acoustic pressure near the T-HEX simultaneously. The symmetric arrangement of three identical heat exchangers, one ‘hot’ heat exchanger, centrally placed between two ‘cold’ heat exchangers, is employed for an improved thermal ...
Heat exchangers are considered to be critical components of thermoacoustic systems and their appropr...
The study of thermoacoustic effects is a relatively new area, particularly in application to thermoa...
Thermoacoustic systems rely on conversion between thermal and acoustic (i.e. mechanical) forms of en...
Heat exchangers under oscillatory flow conditions constitute a critical component of thermoacoustic ...
Heat exchangers under oscillatory flow conditions constitute a critical component of thermoacoustic ...
Heat exchangers are critical components of energy systems such as thermoacoustic engines and coolers...
The design of appropriate heat exchangers is an essential requirement for the development of next ge...
Thermoacoustic machines, Stirling engines or coolers, and pulse tube coolers are examples of energy ...
Heat exchangers are important components of thermoacoustic devices. In oscillatory flow conditions, ...
Heat exchangers play a key role in the overall performance of thermoacoustic devices. Due to the com...
Heat exchangers are important components of thermoacoustic devices. In oscillatory flow conditions, ...
Thermoacoustic machines, Stirling engines or coolers, and pulse tube coolers are examples of energy ...
Thermoacoustic machines, Stirling engines or coolers, and pulse tube coolers are examples of energy ...
Heat exchangers (HXs) constitute key components of thermoacoustic devices and play an important role...
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...
The study of thermoacoustic effects is a relatively new area, particularly in application to thermoa...
Thermoacoustic systems rely on conversion between thermal and acoustic (i.e. mechanical) forms of en...
Heat exchangers under oscillatory flow conditions constitute a critical component of thermoacoustic ...
Heat exchangers under oscillatory flow conditions constitute a critical component of thermoacoustic ...
Heat exchangers are critical components of energy systems such as thermoacoustic engines and coolers...
The design of appropriate heat exchangers is an essential requirement for the development of next ge...
Thermoacoustic machines, Stirling engines or coolers, and pulse tube coolers are examples of energy ...
Heat exchangers are important components of thermoacoustic devices. In oscillatory flow conditions, ...
Heat exchangers play a key role in the overall performance of thermoacoustic devices. Due to the com...
Heat exchangers are important components of thermoacoustic devices. In oscillatory flow conditions, ...
Thermoacoustic machines, Stirling engines or coolers, and pulse tube coolers are examples of energy ...
Thermoacoustic machines, Stirling engines or coolers, and pulse tube coolers are examples of energy ...
Heat exchangers (HXs) constitute key components of thermoacoustic devices and play an important role...
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...
The study of thermoacoustic effects is a relatively new area, particularly in application to thermoa...
Thermoacoustic systems rely on conversion between thermal and acoustic (i.e. mechanical) forms of en...