近五年主要论文成果
[1] Ma X, Du Y*, Li B, et al. Optimization design of multi-sources significant temperature lift steam generating heat pump using renewable heat sources[J]. Renewable Energy. 2026, 256:124607.
[2] Qi D, Feng X, Du Y*, et al. Thermodynamic analysis and optimization of pumped thermal electricity storage system of molten salt based on carbon dioxide Brayton cycle[J]. Applied Thermal Engineering, 2025, 279: 127773.
[3] Du Y*, Zhao T, Lin J, et al. An advanced moving-boundary method for the dynamic simulation of split heat pump system under start-up process[J]. Applied Energy, 2025, 388: 125673.
[4] Ma X, Du Y*, Li B, et al. Enhancing the performance of autocascade steam generating heat pumps through advanced exergy methods[J]. Energy Conversion and Management. 2025, 332:119705.
[5] Ma X, Du Y*, Li B, et al. A comprehensive review of key technologies for the development of oil-free single screw compressors[J]. Applied Thermal Engineering, 2025, 269: 126003.
[6] Ma X, Du Y*, Wu Y, et al. Performance improvement of air-source autocascade high-temperature heat pumps using advanced exergy analysis[J]. Energy, 2024, 307: 132673.
[7] Ma X, Du Y*, Lei B, et al. Energy, exergy, economic, and environmental analysis of a high-temperature heat pump steam system[J]. International Journal of Refrigeration, 2024, 160:423-436.
[8] Ma X, Du Y*, Zhao T, et al. A comprehensive review of compression high-temperature heat pump steam system: Status and trend [J]. International Journal of Refrigeration, 2024, 164: 218-242.
[9] Ma X, Du Y*, Wu Y, et al. Performance evaluation and optimization guidance for steam generating heat pumps with significant temperature rise. Case Studies in Thermal Engineering, 2024, 63: 105351.
[10] Feng X, Wu Y, Du Y*, et al. Optimization and performance improvement of ultra-low temperature cascade refrigeration system based on the isentropic efficiency curve of single-screw compressor [J]. Energy, 2024, 298: 131227.
[11] Du Y*, Lin J, Wu J, et al. Simulation and experimental study on dynamic characteristics of R290 split heat pump during start-up[J]. Applied Thermal Engineering, 2023, 236: 121564.
[12] Du Y, Wu J*, Lin J, et al. Defrosting dynamic behaviors of a propane air conditioner and its rotary compressor under low ambient temperature conditions[J]. International Journal of Refrigeration, 2021, 132: 11-20.
[13] Du Y, Wu J*, Wang C. Research on control method of a R290 ASHP under low-temperature heating condition[J]. International Journal of Refrigeration, 2021, 129: 60-68.
[14] Du Y, Wu J*, Wang C. Experimental study on dynamic characteristics of an R290 heat pump during defrost[J]. Energy and Buildings, 2020, 223: 110174.
[15] Du Y, Wu J*, Wang C, et al. Investigation on the influence of EEV opening on the reliability of an R290 ASHP during defrosting[J]. Energy and Buildings, 2020, 223: 110218.