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  • 教授
  • 博士生导师
  • 教师拼音名称:Song KeWei
  • 所在单位:机电工程学院
  • 办公地点:兰州交通大学机电工程学院(笃行楼)
  • 联系方式:QQ:376768922
  • 学位:博士学位
  • 学科:工程热物理
    车辆工程
    动力工程及工程热物理其他专业
    热能工程
    化工过程机械
    动力机械及工程
    制冷及低温工程
    机械工程其他专业
研究生发表论文

研究生近年发表的部分论文:

31. Thermohydraulic performance of a printed circuit heat exchanger with ribbed cross-connected semicircular channel. Phys. Fluids 37, 027191 (2025)      IF=4.1

30. Effectiveness analysis of novel battery thermal management systems combining phase change material and air-cooled technologies. Applied Thermal Engineering, 2025, 264, 125499.      IF=6.465

29. Thermal characteristics of a double-tube heat exchanger with different twist directions of the inner oval tube. International Journal of Thermal Sciences, 2025, 208, 109481.      IF=4.779

28. Thermo-hydraulic performance enhancement of a circular tube by a novel ellipsoidal dimple configuration. Physics of Fluids, 2025, 37(1), 017125      IF=4.1

27. Heat transfer characteristics investigation of dual-PCM spiral coil tube latent heat thermal energy storage unit considering the effects of natural convectionJournal of Energy Storage2025, 107, 114988        IF=9.4

26. Numerical investigation on thermohydraulic characteristics in a circle tube with a novel arrangement of ellipsoidal dimples. International Journal of Heat and Fluid Flow2024, 110, 109631        IF=2.6

25. Effect of phase angle on thermohydraulic performance of an annular tube formed by co-twisted oval tubes. Physics of Fluids, 2024, 36, 107155.       IF=4.1

24. Improving the thermal-hydraulic performance of air-cooled battery thermal management system by flow splitters. Journal of Energy Storage, 2024, 101, 113818.        IF=9.4

23. Thermal performance of cascaded latent heat thermal energy storage units constructed based on solid-liquid interface information. International Communications in Heat and Mass Transfer, 2024, 158, 107929         IF=7.0

22. Experimental investigation of thermal performance in a shell-and-tube phase change thermal energy storage unit with an inner square tube. Journal of Energy Storage, 2024, 99, 113365.        IF=9.4

21. Numerical investigation of thermal characteristics of double-tube heat exchangers with alternate twist direction and different phase angles of the inner oval tube. Applied Thermal Engineering, 2024, 255, 123979    IF=6.465

20. Performance of a combined battery thermal management system with dual-layer phase change materials and air cooling technologies. Applied Thermal Engineering, 2024, 254, 123865    IF=6.465

19. Effect of wavy delta winglet vortex generators on heat transfer performance of a fin-and-tube heat exchanger. International Journal of Heat and Fluid Flow, 2024, 108, 109485

18. Performance promotion by novel fin configurations with ellipsoidal dimple-protrusion for a circle tube-fin heat exchanger. International Communications in Heat and Mass Transfer, 2024, 157, 107731      IF=7.0

17. Thermal performance of a novel dual-PCM latent thermal energy storage unit with an inner spiral coil tube. Journal of Energy Storage, 2024, 88, 111564     IF=9.4

16. Investigation of the effect of a cylindrical heater on saturated pool boiling heat transfer. International Communications in Heat and Mass Transfer, 2024, 152, 107269      IF=7.0

15. Thermal performance augmentation of inner spiral finned tube for linear fresnel solar reflector. Thermal Science and Engineering Progress, 2024, 49, 102483.      IF=4.8

14. Performance improvement of a thermal management system for Lithium-ion power battery pack by the combination of phase change material and heat pipe. Journal of Energy Storage. 2024, 82, 110512.   IF=9.400

13. Thermal performance promotion of a novel double-tube heat exchanger by helical fin with perforations. International Communications in Heat and Mass Transfer, 2024, 150, 107189      IF=7.0

12. Thermal performance improvement of a circular tube-and-fin heat exchanger by ellipsoidal protrusions on fin surfaces. International Journal of Thermal Sciences, 2024, 196, 108746.      IF=4.779

11. Performance optimization of a wavy finned-tube heat exchanger with staggered curved vortex generators.International Journal of Thermal Sciences 2023(183):107830.      IF=4.779

10. Thermal hydraulic performance augmentation by petal-shaped ribs in a two-pass cooling channel. Case Studies in Thermal Engineering, 2022, 40, 102542.      IF=6.268

9. Thermodynamic characteristics of a novel combination of three-start twisted tube and oval dimples. Case Studies in Thermal Engineering, 2022(37) 102284.    IF=6.268

8. Thermal-hydraulic characteristic of a novel wavy fin-and-circle tubeheat exchanger with concave curved vortex generators. Int. J. Heat Mass Tran., 194 (2022) 123023.   IF=5.431

7. Heat transfer enhancement of a double pipe heat exchanger by Co-Twisting oval pipes with unequal twist pitches. Case Studies in Thermal Engineering, 28(2021), 101411.     IF=6.268

6. The optimal longitudinal location of curved winglets for better thermal performance of a finned-tube heat exchanger. International Journal of Thermal Sciences, 167 (2021) 107035.    IF=4.779

5. Thermal performance enhancement of a double-tube heat exchanger with novel twisted annulus formed by counter-twisted oval tubes, International Journal of Thermal Sciences, 164 (2021) 106892.   IF=4.779

4. Heat transfer enhancement in a novel annular tube with outer straight and inner twisted oval tubes, Symmetry, 12 (8) (2020), 1213.   IF=2.940

3. Effects of Inclination Angle of Vortex Generator on Fluid Flow and Heat Transfer Characteristics of Heat Exchanger, Tuijin Jishu/Journal of Propulsion Technology, 41 (4) (2020) 868-874.     EI

2. Thermal performance of a zig-zag channel formed by two wavy fins mounted with vortex generators. International Journal of Thermal Sciences, 153 (2020) 106361.      IF=4.779

1. Thermo-hydraulic performance optimization of wavy fin heat exchanger by combining delta winglet vortex generators. (2019) Applied Thermal Engineering, 163, 114343.      IF=6.6465