The work focuses on the theoretical study and design of Thermoacoustic Stirling-Like Cycle Engines. One of the main goals of this study is to describe the application of a methodology for energy analysis and optimization of thermoacoustic devices. This new approach avoids complicated mathematical treatments, facilitates access to this fascinating technology for all audiences. The presented methodology is based on the distribution of the active and reactive acoustic power flow according to the passive acoustic circuit. In addition, this methodology allows optimizing the device by comparing different acoustic circuits. This method is evaluated at a theoretical level with the models and simulations developed, for each of the case studies descr...
Thermoacoustic as the name suggests, uses thermal energy to create acoustical or sound energy and vi...
The subject of this thesis is a relatively new class of heat engines and refrigerators, called therm...
Thermoacoustic engines convert heat energy into high amplitude acoustic waves and subsequently into ...
The equations governing energy conversion in traveling wave thermoacoustic machines are affected by ...
Recent developments in thermoacoustic technologies have demonstrated that multi-stage looped thermoa...
Recent developments in thermoacoustic technologies have demonstrated that multi-stage looped thermoa...
Thermoacoustic energy conversion is based on the Stirling cycle and uses sound waves to displace and...
Thermoacoustic energy conversion is based on the Stirling cycle and uses sound waves to displace and...
Thermoacoustic converters are devices for direct conversion of acoustic energy into thermal energy i...
In this study a thermoacoustic single stage engine configuration is compared to a double stage engin...
International audienceIn this paper, a new approach is proposed to control the operation of a thermo...
Thermoacoustics exploit a temperature gradient to produce powerful acoustic pressure waves. The tech...
Thermoacoustic engines are devices suitable to convert heat into acoustic energy and viceversa. They...
Thermoacoustic engines are devices suitable to convert heat into acoustic energy and viceversa. They...
AbstractThis paper presents a novel experimental system of conversion between heat and power of the ...
Thermoacoustic as the name suggests, uses thermal energy to create acoustical or sound energy and vi...
The subject of this thesis is a relatively new class of heat engines and refrigerators, called therm...
Thermoacoustic engines convert heat energy into high amplitude acoustic waves and subsequently into ...
The equations governing energy conversion in traveling wave thermoacoustic machines are affected by ...
Recent developments in thermoacoustic technologies have demonstrated that multi-stage looped thermoa...
Recent developments in thermoacoustic technologies have demonstrated that multi-stage looped thermoa...
Thermoacoustic energy conversion is based on the Stirling cycle and uses sound waves to displace and...
Thermoacoustic energy conversion is based on the Stirling cycle and uses sound waves to displace and...
Thermoacoustic converters are devices for direct conversion of acoustic energy into thermal energy i...
In this study a thermoacoustic single stage engine configuration is compared to a double stage engin...
International audienceIn this paper, a new approach is proposed to control the operation of a thermo...
Thermoacoustics exploit a temperature gradient to produce powerful acoustic pressure waves. The tech...
Thermoacoustic engines are devices suitable to convert heat into acoustic energy and viceversa. They...
Thermoacoustic engines are devices suitable to convert heat into acoustic energy and viceversa. They...
AbstractThis paper presents a novel experimental system of conversion between heat and power of the ...
Thermoacoustic as the name suggests, uses thermal energy to create acoustical or sound energy and vi...
The subject of this thesis is a relatively new class of heat engines and refrigerators, called therm...
Thermoacoustic engines convert heat energy into high amplitude acoustic waves and subsequently into ...