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万杨大博士
发布时间:2022-05-18 10:00 访问次数:0

个人简介 

姓名:万杨大 

性别:男              

出生年月:199105 

职称:讲师 

导师级别:硕士生导师(学术型和专业型) 

最高学位:博士 

通讯地址:湖南省长沙市韶山南路498 

电子邮箱:wanyangda@foxmail.com 

研究方向: 

主要研究方向包括但不限于:蒸发冷却传热传质过程规律及其性能分析、空气调节新技术、高效热交换技术、相变储能技术和区域供冷技术。欢迎机械工程、能源与动力工程、新能源科学与工程、储能科学与工程和建筑环境与能源应用工程等专业的同学报考硕士研究生。 

教育和工作经历   

2021.09—至今 

中南林业科技大学 

机电工程学院 

专任教师 

2019.02—2021.08 

新加坡国立大学 

机械工程 

博士后研究员(Research Fellow 

2017.08—2018.08 

新加坡国立大学 

机械工程 

联合培养博士 

2013.09—2018.12 

湖南大学 

机械工程 

博士(硕博连读) 

2009.09—2013.06 

湖南工业大学 

建筑环境与能源应用工程 

学士 

学术兼职 

[1] Bulidings, Energies, Processes, Sustainability, Thermo, Reactions等期刊联合专刊“Sustainable Thermal Energy Technologies and Processes”客座编辑 

[2] Sustainability期刊专刊“Sustainable Air Quality: Studies Based on Fluid Mechanics and Compressor-Less Water-Based Cooling” 客座编辑 

[3] Solar Energy, Energy Conversion and Management, International Journal of Heat and Mass Transfer, Heat Transfer Engineering 等国际期刊审稿人 

科研项目: 

主持/参与新加坡能源署基金、新加坡建设署基金、新加坡国立大学GAP基金、湖南省教育厅优秀青年基金、长沙市自然科学基金、中南林业科技大学I类引进人才科研启动基金、湖南省研究生科研创新项目和湖南大学大学生创新训练(SIT)计划项目。 

学术论文 

[1] Y.D.Wan, Z.F. Huang, K.Y. Soh, K.J. Chua*, On the performance study of a hybrid indirect evaporative cooling and latent-heat thermal energy storage system under commercial operating conditions, Applied Thermal Engineering 221 (2023) 119902. 第一作者 

[2]Z.F. Huang, Y.D.Wan*, K.Y. Soh, M.R. Islam, K.J. Chua*, Off-design and flexibility analyses of combined cooling and power based liquified natural gas (LNG) cold energy utilization system under fluctuating regasification rates, Applied Energy 15 (2022) 118529. 通讯作者 

[3]Z.F. Huang, K.Y. Soh, Y.D.Wan*, M.R. Islam, K.J. Chua*Assessment of an intermediate working medium and cold energy storage (IWM-CES) system for LNG cold energy utilization under real regasification case, Energy 253 (2022) 124080. 通讯作者 

[4]Y.D. Wan, Z.F. Huang, A. Soh, X. Cui, K.J. Chua*, Analysing the transport phenomena of novel dew-point evaporative coolers with different flow configurations considering condensation, International Journal of Heat and Mass Transfer 170 (2021) 1120991. 第一作者 

[5]Y.D. Wan, A. Soh, Y.L. Shao, X.Cui, Y.Z. Tang, K. J. Chua*, Numerical study and correlations for heat and mass transfer coefficients in indirect evaporative coolers with condensation based on orthogonal test and CFD approach International Journal of Heat and Mass Transfer 153 (2020) 119580. 第一作者 

[6]Y.D. Wan, J. Lin, K.J. Chua*, C.Q. Ren*, Similarity analysis and comparative study on the performance of counter-flow dew point evaporative coolers with experimental validation, Energy Conversion and Management 169 (2018) 97-110.第一作者  

[7]Y.D. Wan, J. Lin, K.J. Chua*, C.Q. Ren*, A new method for prediction and analysis of heat and mass transfer in the counter-flow dew point evaporative cooler under diverse climatic, operating and geometric conditions, International Journal of Heat and Mass Transfer 127 (2018) 1147-1160. 第一作者 

[8]Y.D. Wan, C.Q. Ren*, L. Xing, An approach to the analysis of heat and mass transfer characteristics in indirect evaporative cooling with counter flow configurations, International Journal of Heat and Mass Transfer 108 (2017) 1750-1763. 第一作者 

[9]Y.D. Wan, C.Q. Ren*, L. Xing, Y. Yang, Analysis of heat and mass transfer characteristics in vertical plate channels with falling film evaporation under uniform heat flux/uniform wall temperature boundary conditions, International Journal of Heat and Mass Transfer 108 (2017) 1279-1284. 第一作者 

[10]Y.D. Wan, C.Q. Ren*, Y. Yang, L. Xing, Study on average Nusselt and Sherwood numbers in vertical plate channels with falling water film evaporation, International Journal of Heat and Mass Transfer 110 (2017) 783-788. 第一作者 

[11]Y.D. Wan, C.Q. Ren*, Z. Wang, Y. Yang, L. Yu, Numerical study and performance correlation development on counter-flow indirect evaporative air coolers, International Journal of Heat and Mass Transfer 115 (2017) 826-830.第一作者  

[12]C.Q. Ren*, Y.D. Wan, A new approach to the analysis of heat and mass transfer characteristics for laminar air flow inside vertical plate channels with falling water film evaporation, International Journal of Heat and Mass Transfer  103 (2016) 1017-1028. 导师一作本人二作 

[13]Y.D. Wan, C.Q. Ren*, L. Yu, Y. Yang, Z. Wang, Investigation on average Nusselt and Sherwood numbers in indirect evaporative cooling with counter-flow configurations, 16th International Heat Transfer Conference, Beijing, 2018. 第一作者 

[14]Y.D. Wan, A. Soh, Y.L. Shao, M. Kumja, Z. Khin, M.R. Islam, K.J. Chua*, Experimental study on the use of a synthesized paraffin-based phase change material in combination with a packed bed latent-heat thermal energy storage with spheres 12th International Conference on Applied Energy, Bangkok, 2020. 第一作者 

[15]Z.F. Huang, Y.D. Wan, K.Y. Soh, K.J. Chua*, Hybrid operating method to improve the part-load performance of gas turbine based combined cooling and power system, Energy Conversion and Management 226 (2020) 113506. 

[16]Y.L. Shao, Y.D. Wan, Z. Khin, M. Kumja, A. Soh, M.R. Islam, K.J.Chua*, Multi-objective optimization of a cryogenic ‘cold’ energy recovery system for LNG regasification, 12th International Conference on Applied Energy, Bangkok, 2020. 

[167]Y.L. Shao,K.Y.Soh,Y.D. Wan,M. Kumja, Z. Khin, M.R. Islam, K.J.Chua*, Simulation and experimental study of thermal storage systems for district cooling system under commercial operating conditions, Energy 203 (2020) 117781. 

[18]X. Cui W.C. Yan, X.J. Chen, Y.D. Wan, K.J. Chua*, Parametric study of a membrane-based semi-direct evaporative cooling system, Energy and Buildings 228 (2020) 110439 

[19]Y.Z. Tang, Z.L. Liu, Y.X. Li, N.Yang, Y.D. Wan, K. J. Chua*, A double-choking theory as an explanation of the evolution laws of ejector performance with various operational and geometrical parameters,Energy Conversion and Management 206(2020)112499.

[20]L. ChunG. GongP. PengY.D. Wan, K. J. ChuaX. FangW. LiResearch on thermodynamic performance of a novel building cooling system integrating dew point evaporative cooling, air-carrying energy radiant air conditioning and vacuum membrane-based dehumidification (DAV-cooling system) Energy Conversion and Management 245 (2021) 114551.  

[21]Y.L. ShaoK.Y. SohY.D. WanZ.F. HuangM.R. IslamK.J. ChuaMulti-objective optimization of a cryogenic cold energy recovery system for LNG regasification Energy Conversion and Management 244 (2021) 114524.  

主要获奖: 

[1]2017博士研究生国家奖学金 教育部 

[2]2017湖南大学优秀博士研究生校长奖学金 湖南大学 

[3]2017国家建设高水平大学公派研究生项目奖学金 国家留学基金管理委员会 

[4]2018湖南大学大学生实验创新项目(SIT)一等奖 湖南大学 

[5]2018湖南大学优秀研究生 湖南大学 

[6]2020湖南大学优秀博士学位论文 湖南大学 

  

 
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