1 |
Experimental study on absorption/compression hybrid refrigeration cycle Li JB, Xu SM, Kong XQ, Liu K, Cui FL Energy, 168, 1237, 2019 |
2 |
Performance comparison of two absorption-compression hybrid refrigeration systems using R1234yf/ionic liquid as working pair Liu XY, Ye Z, Bai LH, He MG Energy Conversion and Management, 181, 319, 2019 |
3 |
Thermo-economic assessment of a novel trigeneration system based on coupling of organic Rankine cycle and absorption-compression cooling and power system for waste heat recovery Zoghi M, Habibi H, Chitsaz A, Ayazpour M, Mojaver P Energy Conversion and Management, 196, 567, 2019 |
4 |
Performance assessment and optimization of a humidification dehumidification (HDH) system driven by absorption-compression heat pump cycle Rostamzadeh H, Namin AS, Ghaebi H, Amidpour M Desalination, 447, 84, 2018 |
5 |
A novel internally hybrid absorption-compression heat pump for performance improvement Wu W, You T, Wang J, Wang BL, Shi WX, Li XT Energy Conversion and Management, 168, 237, 2018 |
6 |
A high-temperature hybrid absorption-compression heat pump for waste heat recovery Liu CC, Jiang YC, Han W, Kang QL Energy Conversion and Management, 172, 391, 2018 |
7 |
Proposal and analysis of a novel heat-driven absorption-compression refrigeration system at low temperatures Chen Y, Han W, Jin HG Applied Energy, 185, 2106, 2017 |
8 |
Design of serially connected district heating heat pumps utilising a geothermal heat source Jensen JK, Ommen T, Markussen WB, Elmegaard B Energy, 137, 865, 2017 |
9 |
Comparative study on two low-grade heat driven absorption-compression refrigeration cycles based on energy, exergy, economic and environmental (4E) analyses Xu YJ, Jiang N, Pan F, Wang Q, Gao ZL, Chen GM Energy Conversion and Management, 133, 535, 2017 |
10 |
Energetic, Exergetic, Economic and Environmental (4E) analysis of a solar assisted refrigeration system for various operating scenarios Bellos E, Tzivanidis C, Tsifis G Energy Conversion and Management, 148, 1055, 2017 |