1 |
Performance of an air-cooled looped thermoacoustic engine capable of recovering low-grade thermal energy Tan JQ, Luo JQ, Wang Y, Wei JJ, Jin T International Journal of Energy Research, 44(4), 2682, 2020 |
2 |
The effect of working fluid on the performance of a large-scale thermoacoustic Stirling engine Dong SC, Shen GQ, Xu MB, Zhang SP, An LS Energy, 181, 378, 2019 |
3 |
Using thermal analysis technology to assess the thermal stability of 1,3-dimethylimidazolium nitrate Liu SH, Zhang B Process Safety and Environmental Protection, 124, 181, 2019 |
4 |
Theoretical and experimental investigation of the dynamic behaviour of a standing-wave thermoacoustic engine with various boundary conditions Chen G, Tang LH, Mace BR International Journal of Heat and Mass Transfer, 123, 367, 2018 |
5 |
Thermal stability of some imidazolium [NTf2] ionic liquids: Isothermal and dynamic kinetic study through thermogravimetric procedures Parajo JJ, Teijeira T, Fernandez J, Salgado J, Villanueva M Journal of Chemical Thermodynamics, 112, 105, 2017 |
6 |
Thermal decomposition mechanisms of 1H-1,2,4-triazole derivatives: A theoretical study Kowhakul W, Inoue D, Nakagawa Y, Masamoto H, Shigematsu M Journal of Loss Prevention in The Process Industries, 50, 37, 2017 |
7 |
The physics and Metaphysics of the sensitivity of calorimetric instruments and human senses Das DK Process Safety Progress, 36(3), 280, 2017 |
8 |
Phase adjustment analysis and performance of a looped thermoacoustic prime mover with compliance/resistance tube Jin T, Yang R, Wang Y, Liu YL, Feng Y Applied Energy, 183, 290, 2016 |
9 |
A multi-stage travelling wave thermoacoustic engine driven refrigerator and operation features for utilizing low grade energy Zhang XQ, Chang JZ, Cai SS, Hu JA Energy Conversion and Management, 114, 224, 2016 |
10 |
Analytical determination of oscillating frequencies and onset temperatures of standing wave thermoacoustic heat engines Boroujerdi AA, Ziabasharhagh M International Journal of Heat and Mass Transfer, 98, 401, 2016 |