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2021:
79. Z.H. Huang, X.W. Tang, Q.L. Luo, Y.H. Gan*, J.L. Liang, R. Li, T. Xiong, J.L. Liu, L. Ma, D.W. Dong, Y. Li, Numerical analysis on heat transfer characteristics of a multi-vapor channel vapor chamber with novel ultra-thin composite wick, Case Studies in Thermal Engineering, 2021. (SCI)
78. M.L. Yao, Y.H. Gan*, J.L. Liang, D.W. Dong, L. Ma, J.L. Liu, Q.L. Luo, Y. Li, Performance simulation of a heat pipe and refrigerant-based lithium-ion battery thermal management system coupled with electric vehicle air-conditioning, Applied Thermal Engineering, 2021, 191:116878 . (SCI)
77. 石敦峰, 甘云华, 罗燕来, 江政纬, 周毅. 乙醇浓度和应变率对扩散火焰特性的数值分析[J]. 化工学报, 2021, 72(5): 2801-2809. (EI)
76. J.L. Liang, Y.H. Gan*, M.L. Yao, Y. Li, Numerical analysis of capacity fading for a LiFePO4 battery under different current rates and ambient temperatures, International Journal of Heat and Mass Transfer, 2021, 165: 120615. (SCI)
2020:
75. Y.L. Luo, Y.H. Gan*, Z.W. Jiang, Study on the electrical response of small ethanol-air diffusion flame under the uniform electric field, International Journal of Energy Research, 2020, 44: 11872-11882. (SCI)
74. J.L. Liang, Y.H. Gan*, M.X. Tan, Y. Li, Multilayer electrochemical-thermal coupled modeling of unbalanced discharging in a serially connected lithium-ion battery module, Energy, 2020, 209:118429 (SCI)
73. Y.H. Gan*, L.F. He, J.L. Liang, M.X. Tan, T. Xiong, Y. Li, A numerical study on the performance of a thermal management system for a battery pack with cylindrical cells based on heat pipes, Applied Thermal Engineering, 2020, 179: 11574. (SCI)
72. Z.Q. He, Y.F. Yan*, S. Feng, X.Q. Li, Z.Q. Yang, J.Y. Ran, Y.H. Gan, Investigation on Premixed Methane/Air Combustion Characteristics in Heat Recirculation Micro Combustor with Separating Cylinder, Chemical Engineering & Processing: Process Intensification, 2020, 153: 107987. (SCI)
71. Y. Zhou, Y.H. Gan*, X.L. Gou, Chemical kinetic modeling study of methyl esters oxidation: improvement on the prediction of early CO2 formation, Fuel, 2020, 279: 118383. (SCI)
70. M.X. Tan, Y.H. Gan*, J.L. Liang, L.F. He, Y. Li, S.R. Song, Y.L. Shi, Effect of initial temperature on electrochemical and thermal characteristics of a lithium-ion battery during charging process, Applied Thermal Engineering, 2020, 177: 115500. (SCI)
69. 周毅, 甘云华*, 杨泽亮, 采用多元非线性回归法的生物柴油动力学分析, 哈尔滨工程大学学报, 2020, 41(7): 1036-1042. (EI)
68. Z.W. Jiang, Y.H. Gan*, Y.L. Luo, Effect of viscosity ratio on the dynamic response of droplet deformation under a steady electric field, Physics of Fluids, 2020, 32(5): 053301. (SCI, Editor's Pick)
67. 甘云华*, 谭梅鲜, 梁嘉林, 罗燕来, 王建钦, 何林峰, 恒功率放电下锂离子电池的产热特性, 华南理工大学学报(自然科学版), 2020, 48(7) :1-8. (EI)
66. 姚孟良, 甘云华*, 梁嘉林, 李勇, 电动汽车集成热管理研究进展, 工程科学学报, 2020, 42(4): 412-422. (EI)
65. J.L. Liang, Y.H. Gan*, W.F. Song, M.X. Tan, Y. Li, Thermal-electrochemical simulation of electrochemical characteristics and temperature difference for a battery module under two-stage fast charging, Journal of Energy Storage, 2020,29:101307. (SCI)
64. Y.H. Gan*, J.Q. Wang, J.L. Liang, Z.H. Huang, M.L. Hu**, Development of thermal equivalent circuit model of heat pipe-based thermal management system for a battery module with cylindrical cells, Applied Thermal Engineering, 2020, 164: 114523. (SCI)(ESI高引论文)
63. W.J. Zhou, Y. Li*, Z.S. Chen, L.Q. Deng, Y.H. Gan, Ultra-thin flattened heat pipe with a novel band-shape spiral woven mesh wick for cooling smartphones, International Journal of Heat and Mass Transfer, 2020, 146: 118792. (SCI)
62. Z.W. Jiang, Y.H. Gan*, Y.L. Shi**, An improved model for prediction of the cone-jet formation in electrospray with the effect of space charge, Journal of Aerosol Science, 2020, 139: 105463. (SCI)
2019:
61. Y.H. Gan *, Z.W. Jiang, H.G. Li, Y.L. Luo, X.W. Chen, Y.L. Shi, Y.Y. Yan, Y.F. Yan, A comparative study on droplet characteristics and specific charge of ethanol in two small-scale electrospray systems, Scientific Reports, 2019, 9: 18791. (SCI) (Nature 子刊)
60. J.L. Liang, Y.H. Gan*, Y. Li, M.X. Tan, J.Q. Wang, Thermal and electrochemical performance of a serially connected battery module using a heat pipe-based thermal management system under different coolant temperatures, Energy, 2019, 189: 116233. (SCI)
59. W.J. Zhou, Y. Li*, Z.S. Chen, L.Q. Deng, Y.H. Gan, Effect of the passage area ratio of liquid to vapor on an ultra-thin flattened heat pipe, Applied Thermal Engineering, 2019, 162:114215. (SCI)
58. 叶宏程, 甘云华*, 江政纬, 罗燕来, 乙醇荷电喷雾对冲燃烧的火焰特性, 化工学报, 2019, 70(12): 4787-4794. (EI, 封面论文)
57. 江旭丽, 甘云华*, 江政纬, 李华, 乙醇-生物柴油液滴的荷电与破碎特性分析, 高电压技术, 2019, 45(12): 4115-4121. (EI)
56. 甘云华*, 郑晓红, 江政纬, 罗燕来, 周毅, 环形电极结构对喷雾形态及荷电效果的影响,农业机械学报, 2019, 50(9):387-393. (EI)
55. Z.W. Jiang, Y.H. Gan*, Y.G. Ju, J.L. Liang, Y. Zhou, Experimental study on the electrospray and combustion characteristics of biodiesel-ethanol blends in a meso-scale combustor, Energy, 2019, 179:843-849. (SCI)
54. Y.H. Gan*, H.G. Li, Z.W. Jiang, X.W. Chen, Y.L. Luo, Y. Tong, Y.L. Shi**, X. Jiang, An experimental investigation on the electrospray characteristics in a meso-scale system at different modes, Experimental Thermal and Fluid Science, 2019, 106:130-137. (SCI)
53. Y. Li*, W.J. Zhou, Z.X. Li, Z.S. Chen, Y.H. Gan, Experimental analysis of thin vapor chamber with composite wick structure under different cooling conditions, Applied Thermal Engineering, 2019, 156: 471-484. (SCI)
52. J.Q. Wang, Y.H. Gan*, J.L. Liang, M.X. Tan, Y. Li, Sensitivity analysis of factors influencing a heat pipe-based thermal management system for a battery module with cylindrical cells, Applied Thermal Engineering, 2019,151:475-485. (SCI)(ESI高引论文)
51. W.J. Zhou, Y. Li*, Z.S. Chen, L.Q. Deng, Y.H. Gan, A novel ultra-thin flattened heat pipe with biporous spiral woven mesh wick for cooling electronic devices, Energy Conversion and Management, 2019, 180: 769-783. (SCI)
2018:
50. Y.L. Luo, Y.H. Gan*, Z.W. Jiang, An improved reaction mechanism for predicting the charged species in ethanol-air flame, Fuel, 2018, 228:74-80. (SCI)
49. Y.H. Gan*, Y. Tong, Z.W. Jiang, X.W. Chen, H.G. Li, X. Jiang**, Electro-spraying and catalytic combustion characteristics of ethanol in meso-scale combustors with steel and platinum meshes, Energy Conversion and Management, 2018, 164: 410-416. (SCI)
48. J.L. Liang, Y.H. Gan*, Y. Li, Investigation on the thermal performance of a battery thermal management system using heat pipe under different ambient temperatures, Energy Conversion and Management, 2018, 155:1-9. (SCI)(ESI高引论文)
47. Y.H. Gan*, X.W. Chen, Y. Tong, X. Zhang, Y. Zhang**, Thermal performance of a meso-scale combustor with electrospray technique using liquid ethanol as fuel, Applied Thermal Engineering, 2018, 128: 274-281. (SCI)
46.甘云华*, 李海鸽, 江政纬, 陈小文, 佟洋, 组合电极荷电雾化的实验研究, 工程热物理学报, 2018, 39(7):1585-1591. (EI)
45.甘云华*, 王建钦, 梁嘉林, 基于热管的圆柱形电池包冷却性能分析,化工学报, 2018, 69(5):1964-1971. (EI)
44.甘云华*, 陈小文, 李海鸽, 小尺度双网格荷电雾化燃烧器热损失特性, 农业机械学报, 2018, 49(1):375-380. (EI)
2017:
43. Y.H. Gan*, X. Zhang, H.G. Li, Y. Tong, Y.L. Shi**, Y.Y. Yan, The atomization current and droplet size of ethanol in two different small-scale electro-spraying systems, Journal of Electrostatics, 2017, 87, 228-235. (SCI)
42. Y.L. Luo, Y.H. Gan*, J.L. Xu, Y.Y. Yan, Y.L. Shi,**, Effects of electric field intensity and frequency of AC electric field on the small-scale ethanol diffusion flame behaviors, Applied Thermal Engineering, 2017, 115:1330-1336. (SCI)
41. Y.H. Gan*, Y. Tong, Y.G. Ju, X. Zhang, H.G. Li, X.W. Chen, Experimental study on electro-spraying and combustion characteristics in meso-scale combustors, Energy Conversion and Management, 2017, 131:10-17. (SCI)
40. Y.L. Luo, Y.H. Gan*, X.Jiang**, Investigation of the effect of DC electric field on a small ethanol diffusion flame, Fuel, 2017, 188:621-627 (SCI)
39. 甘云华*, 江政纬, 李海鸽. 锥射流模式下乙醇静电喷雾液滴速度特性分析, 力学学报, 2017, 49(6): 1272-1279. (EI)
38. 甘云华*, 李海鸽, 张夏, 杨泽亮, 组合电极小型燃烧器的电学及雾化特性研究, 中国电机工程学报, 2017, 37(8): 2319-2327. (EI)
2016:
37. Y.H. Gan*, Y. Tong, Y.G. Ju, X. Zhang, H.G. Li, X.W. Chen, Experimental study on electro-spraying and combustion characteristics in small-scale combustors, the 36th International symposium on Combustion, Coex, Seoul, Korea, July 31-August 5, 2016. (Oral presentation)
36. J.J. Zhao, Y.H. Gan*, X.Q. Ma, Z.L. Yang,The cost of electric power generation in Guangdong province, Energy Sources, Part B: Economics, Planning, and Policy, 2016,11(11):1014-1019. (SCI)
35. Y.H. Gan*, X. Zhang, H.G. Li, Y. Tong, Y. Zhang, Y.L. Shi, Z.L. Yang, Effect of a ring electrode on the cone-jet characteristics of ethanol in small-scale electro-spraying combustors, Journal of Aerosol Science, 2016, 98: 15-29. (SCI)
34. Y.H. Gan*, M. Wang, Y.L. Luo, X.W. Chen, J.L. Xu**, Effects of direct-current electric fields on flame shape and combustion characteristics of ethanol in small-scale, Advances in Mechanical Engineering, 2016, 8(1):1-14. (SCI)
33. 史艳玲, 甘云华*, 直流电场下小尺度扩散火焰建模与控制仿真, 化工学报, 2016, 67(7): 2777-2783. (EI)
32. 甘云华*, 张夏, 佟洋, 陈小文, 杨泽亮, 基于双电极荷电雾化的乙醇锥-射流特性, 机械工程学报, 2016, 52(12): 158-164. (EI)
31. 史艳玲, 罗智斌, 甘云华*, 李华, 杨泽亮, 小尺度荷电喷雾系统雾化区场强分布特性分析, 农业机械学报, 2016, 47(5): 343-351. (EI)
2015:
30. Y.H. Gan*, Y.L. Luo, M. Wang, Y.L. Shi, Y.Y. Yan**, Effect of alternating electric fields on the behavior of small-scale laminar diffusion flames, Applied Thermal Engineering, 2015, 89: 306-315. (SCI)
29. Y.H. Gan*, Z.B. Luo, Y.P Cheng, J.L. Xu**, The electro-spraying characteristics of ethanol for application in a small-scale combustor under combined electric field, Applied Thermal Engineering , 2015, 87: 595-604. (SCI)
28. M.L. Hu*, L Liu, Y.Z. Xu, C.G. Bai, Y.H. Gan**, The Structure, Growth Process and Growth Mechanism of Perovskite in High Titanium-Bearing Blast Furnace Slag, Metallugical and Materials Transactions B, 2015, 46(4): 1751-1759. (SCI)
27. Y.H.Gan, J.L.Xu*, Y.Y.Yan**, An experimental study of two-phase pressure drop of acetone in triangular silicon micro-channels, Applied Thermal Engineering, 2015, 80:76-86. (SCI)
26. 甘云华*, 张夏, 罗智斌, 微尺度锥射流雾化模拟分析, 高电压技术, 2015, 41(12): 4000-4007. (EI)
25. 甘云华*, 佟洋, 罗智斌, 乙醇在微尺度单电极燃烧器内雾化与燃烧, 化工学报, 2015, 66(11): 4597-4602. (EI)
24. 甘云华*, 罗燕来, 田中华, 燃料流量与管径对受限空间下微小火焰的影响分析, 农业机械学报, 2015,46(1):323-328. (EI)
23. 史艳玲, 罗智斌, 甘云华*, 徐敏, 小尺度荷电锥射流场强分布特性分析, 农业机械学报, 2015, 46(4):15-20. (EI)
2014:
22. Y.H.Gan*, J.L.Xu, Y.Y.Yan, M. Wang, Y.L.Luo, Z.L.Yang, A comparative study on free jet and confined jet diffusion flames of liquid ethanol from small nozzles, Combustion Science and Technology, 2014, 186(2): 120-138. (SCI)
21. J.J. Zhao, Y.H. Gan*, X.Q. Ma, Z.L. Yang, An optimization model of coal allocation in a group, TELKOMNIKA Indonesian Journal of Electrical Engineering 2014, 12(5),3728-3736.
20. 甘云华*, 王美, 史艳玲, 乙醇小尺度射流扩散火焰燃烧温度及稳燃特性, 中国电机工程学报, 2014,34(17): 2802-2807. (EI)
19. 甘云华*, 罗燕来, 冯清颖, 史艳玲, 受限空间下散热对微火焰稳定性的影响分析, 农业机械学报, 2014, 45(4):37-41,27. (EI)
2013之前:
18. T. Xu, X.N Gao*, J. Yang, Y.H. Gan, Z.L. Yang, Z.G Zhang. Experimental and Numerical Simulation Study of the Microscale Laminar Flow Diffusion Combustion of Liquid Ethanol, Industrial and Engineering Chemistry Research, 2013,52(23): 8021-8027. (SCI)
17.甘云华*, 王美, 杨泽亮, 液体乙醇小尺度扩散火焰的稳燃极限, 燃烧科学与技术, 2013, 19(6): 488-492.
16. 甘云华*, 宋景东, 杨泽亮, 矫明伦, 郑昊, 小尺度射流扩散火焰结构的实验研究, 华南理工大学学报, 2011, 39(3): 73-77. (EI)
15. 徐涛, 高学农, 甘云华*, 杨泽亮, 方玉堂, 张正国, 电场作用下液体乙醇微尺度层流扩散燃烧, 燃烧科学与技术,2011, 17(5): 401-406. (EI)
14. 甘云华*, 陈绍有, 杨泽亮, 赵剑剑, 液体乙醇微尺度扩散火焰高度的影响因素研究, 工程热物理学报, 2010, 31(11):1957-1960.(EI)
13. Y.H.Gan, J.L.Xu*, S.F.Wang, Are the available boiling heat transfer coefficients suitable for silicon microchannel heat sinks? Microfluidics and Nanofluidics, 2008, 4(6): 575-587. (SCI)
12. J.L. Xu*, Y.X. Song, W.Zhang, H. Zhang, Y.H. Gan. Numerical simulations of interrupted and conventional microchannel heat sinks, International Journal of Heat and Mass Transfer, 2008, 51(25-26): 5906-5917. (SCI)
11. 甘云华*, 杨泽亮, 轴向导热对微通道内传热特性的影响, 化工学报, 2008, 59(10): 2436-2441. (EI)
10. J.L. Xu*, Y.H.Gan, Uniform MEMS chip temperatures in the nucleate boiling heat transfer region by selecting suitable, medium boiling number range, Nanoscale and MicroscaleThermophysical Engineering, 2007, 11(3-4): 273-300 (SCI)
9. 甘云华, 徐进良*,硅基微通道中周期性沸腾的光学可视化, 化工学报, 2007, 58(7): 1641-1647. (EI)
8. J.L. Xu*, Y.H. Gan, D.C.Zhang, X.H. Li. Microscale heat transfer enhancement using thermal boundary layer redeveloping concept. International Journal of Heat and Mass Transfer, 2005, 48(9): 1662-1674(SCI)
7. J.L. Xu*, Y.H. Gan, D.C.Zhang, X.H. Li. Microscale boiling heat transfer in micro time scale at high heat fluxes. Journal of Micromechanics and Microengineering, 2005, 15(2): 362-376(SCI)
6. J.L. Xu*, Y.H. Gan. Oscillating flow behavior of a natural circulation loop using minichannels at atmospheric pressure. Applied Thermal Engineering, 2004, 24(17-18): 2665-2677 (SCI)