1 |
Parametric study and sensitivity analysis of a PV/microchannel direct-expansion CO2 heat pump Rony RU, Gladen A Solar Energy, 218, 282, 2021 |
2 |
How to select regenerative configurations of CO2 transcritical Rankine cycle based on the temperature matching analysis Tian H, Xu ZQ, Liu P, Wang X, Shu GQ International Journal of Energy Research, 44(4), 2560, 2020 |
3 |
Review of carbon dioxide (CO2) based heating and cooling technologies: Past, present, and future outlook Dilshad S, Kalair AR, Khan N International Journal of Energy Research, 44(3), 1408, 2020 |
4 |
Ejector based CO2 transcritical combined cooling and power system utilizing waste heat recovery: A thermoeconomic assessment Ipakchi O, Mosaffa AH, Farshi LG Energy Conversion and Management, 186, 462, 2019 |
5 |
Performance investigation of a two-phase transcritical CO2 ejector heat pump system Taleghani ST, Sorin M, Poncet S, Nesreddine H Energy Conversion and Management, 185, 442, 2019 |
6 |
Performance evaluation of a low-grade power generation system with CO2 transcritical power cycles Ge YT, Li L, Luo X, Tassou SA Applied Energy, 227, 220, 2018 |
7 |
Parametric evaluation and performance comparison of a modified CO2 transcritical refrigeration cycle in air-conditioning applications Wang Z, Han FH, Sunden B Chemical Engineering Research & Design, 131, 617, 2018 |
8 |
Experimental comparison of dynamic responses of CO2 transcritical power cycle systems used for engine waste heat recovery Li XY, Shu GQ, Tian H, Huang GD, Liu P, Wang X, Shi LF Energy Conversion and Management, 161, 254, 2018 |
9 |
Experimental investigation on the performance of transcritical CO2 ejector-expansion heat pump water heater system Zhu YH, Huang YL, Li CH, Zhang FZ, Jiang PX Energy Conversion and Management, 167, 147, 2018 |
10 |
Preliminary tests on dynamic characteristics of a CO2 transcritical power cycle using an expansion valve in engine waste heat recovery Li XY, Shu GQ, Tian H, Shi LF, Huang GD, Chen TY, Liu P Energy, 140, 696, 2017 |