A stack with a small critical temperature gradient is desirable for a standing wave thermoacoustic engine to obtain a low onset temperature difference (the minimum temperature difference to start engine-s self-oscillation). The viscous and heat relaxation loss in the stack determines the critical temperature gradient. In this work, a dimensionless critical temperature gradient factor is obtained based on the linear thermoacoustic theory. It is indicated that the impedance determines the proportion between the viscous loss, heat relaxation losses and the power production from the heat energy. It reveals the effects of the channel dimensions, geometrical configuration and the local acoustic impedance on the critical temperature gradient in st...
Numerous reports have established the refrigeration applications of thermoacoustic cooling without c...
Thermoacoustics is the field concerned with transformations between thermal and acoustic energy. Thi...
Pressure oscillations in a sound wave are accompanied by temperature oscillations. In the presence o...
Thermoacoustic energy conversion is based on the Stirling cycle and uses sound waves to displace and...
International audienceThe influence of a resistive load on the starting performance of a standing-wa...
A thermoacoustic engine is one of promising system for utilization of unused energy. The object of t...
International audienceThis paper gives a simplified analytical description of spontaneous generation...
A finite element model is presented to obtain the stability limit of, as an example, 2D standing wav...
Thermoacoustic engines convert heat energy into high amplitude sound waves, which is used to drive t...
A prototype transcritical thermoacoustic engine has been constructed and tested, yielding thermoacou...
Thermoacoustics concerns phenomena in which an interaction of acoustics with thermodynamics takes pl...
A simplified physical model for calculating the onset temperature ratio and the frequency of a stand...
International audienceThis paper develops a novel method to optimize standing-wave thermoacoustic en...
This paper deals with the problem to derive a marginal condition for the onset of spontaneous thermo...
The aim of this study is mainly devoted to explain a thermoacoustic effect. We explore the basic pri...
Numerous reports have established the refrigeration applications of thermoacoustic cooling without c...
Thermoacoustics is the field concerned with transformations between thermal and acoustic energy. Thi...
Pressure oscillations in a sound wave are accompanied by temperature oscillations. In the presence o...
Thermoacoustic energy conversion is based on the Stirling cycle and uses sound waves to displace and...
International audienceThe influence of a resistive load on the starting performance of a standing-wa...
A thermoacoustic engine is one of promising system for utilization of unused energy. The object of t...
International audienceThis paper gives a simplified analytical description of spontaneous generation...
A finite element model is presented to obtain the stability limit of, as an example, 2D standing wav...
Thermoacoustic engines convert heat energy into high amplitude sound waves, which is used to drive t...
A prototype transcritical thermoacoustic engine has been constructed and tested, yielding thermoacou...
Thermoacoustics concerns phenomena in which an interaction of acoustics with thermodynamics takes pl...
A simplified physical model for calculating the onset temperature ratio and the frequency of a stand...
International audienceThis paper develops a novel method to optimize standing-wave thermoacoustic en...
This paper deals with the problem to derive a marginal condition for the onset of spontaneous thermo...
The aim of this study is mainly devoted to explain a thermoacoustic effect. We explore the basic pri...
Numerous reports have established the refrigeration applications of thermoacoustic cooling without c...
Thermoacoustics is the field concerned with transformations between thermal and acoustic energy. Thi...
Pressure oscillations in a sound wave are accompanied by temperature oscillations. In the presence o...