Thermodynamic analysis and optimization of a flash-binary geothermal power generation system J Wang, J Wang, Y Dai, P Zhao
Geothermics 55, 69-77, 2015
139 2015 Thermodynamic analysis and optimization of a transcritical CO2 geothermal power generation system based on the cold energy utilization of LNG J Wang, J Wang, Y Dai, P Zhao
Applied Thermal Engineering 70 (1), 531-540, 2014
137 2014 Thermodynamic analysis of a new combined cooling and power system using ammonia–water mixture J Wang, J Wang, P Zhao, Y Dai
Energy Conversion and Management 117, 335-342, 2016
136 2016 Performance investigation of a new geothermal combined cooling, heating and power system J Wang, C Ren, Y Gao, H Chen, J Dong
Energy conversion and management 208, 112591, 2020
56 2020 Exergoeconomic Analysis and Optimization of a Supercritical Cycle Coupled with a Kalina Cycle H Li, M Wang, J Wang, Y Dai
Journal of Energy Engineering 143 (2), 04016055, 2017
52 2017 Assessment of off-design performance of a Kalina cycle driven by low-grade heat source J Wang, J Wang, Y Dai, P Zhao
Energy 138, 459-472, 2017
49 2017 Proposal and thermodynamic assessment of a new ammonia-water based combined heating and power (CHP) system J Wang, J Wang, P Zhao, Y Dai
Energy conversion and management 184, 277-289, 2019
37 2019 Thermodynamic analysis and comparative investigation of a new combined heating and power system driving by medium-and-high temperature geothermal water C Ren, J Wang, H Chen, X Liu, M An
Energy Conversion and Management 233, 113914, 2021
20 2021 Selection of working fluid for organic Rankine cycle used in geothermal power plant JY Wang, JF Wang, HY Wang, Y Dai, P Zhao
Journal of Engineering Thermophysics 38 (1), 11-17, 2017
15 2017 Off-design performance analysis of a transcritical CO2 Rankine cycle with LNG as cold source J Wang, J Wang, Y Dai, P Zhao
International Journal of Green Energy 14 (9), 774-783, 2017
13 2017 A new combined cooling and power system based on ammonia-water absorption refrigeration cycle: Thermodynamic comparison and analysis J Wang, Z Liu, H Wang, X Liu
Energy Conversion and Management 270, 116262, 2022
12 2022 Thermoeconomic analysis and multi-objective optimization of a combined cooling and power system using ammonia-water mixture: Case study L Cao, J Wang, L Chen, J Lou, J Wang, Y Dai
Journal of Energy Engineering 144 (3), 05018001, 2018
10 2018 Thermodynamic analysis and comparison study of an Organic Rankine Cycle (ORC) and a Kalina cycle for waste heat recovery of compressor intercooling J Wang, J Wang, P Zhao, Y Dai, Y Peng
Turbo Expo: Power for Land, Sea, and Air 45660, V03BT26A007, 2014
8 2014 Thermodynamic Analysis of a New Combined Cooling and Power System Coupled by the Kalina Cycle and Ammonia–Water Absorption Refrigeration Cycle H Wang, J Wang, Z Liu, H Chen, X Liu
Sustainability 14 (20), 13260, 2022
6 2022 Comprehensive performance assessment and multi-objective optimization of a new combined cooling, heating and power system with CO2 working fluid Y Yang, J Wang, W Wang, H Chen, X Liu
Applied Thermal Engineering 236, 121673, 2024
4 2024 Thermodynamic analysis and comparison of an orc-ofc combined power generation system J Wang, J Wang, Y Dai
3rd International seminar on orc power systems, 12-14, 2015
3 2015 Experimental study on condensation heat transfer characteristics of steam in rectangular channels rotating about a parallel axis S Wang, J Dong, H Guo, L Qiao, S Zhang, J Wang
Applied Thermal Engineering 213, 118769, 2022
2 2022 Experimental study on condensation friction pressure drop in rotating channels and proposal of new correlation S Wang, J Dong, H Guo, L Qiao, S Zhang, J Wang
Thermal Science 26 (6 part B), 5253-5266, 2022
2 2022 Numerical simulation and analysis of heat transfer performance of new airfoil fin printed circuit heat exchangers Z Liu, J Wang, W Wang, X Liu
Thermal Science and Engineering Progress 49, 102473, 2024
1 2024 Study on the condensation characteristics of steam flow in rotating rectangular channel with different aspect ratios S Wang, H Guo, J Wang, L Qiao, J Dong
Thermal Science and Engineering Progress 57, 103114, 2025
2025