
• 工作经历
2005-现在
从事以下专业咨询:节能减排,能源管理,能源系统的集成,设计,分析和优化,整体煤气化联合循环IGCC,煤气化,联合循环,洁净煤技术,煤层气/煤矿瓦斯的利用,工业窑炉,燃料电池,及其它高效能源系统,如分布式供能系统,煤气化/工业加热集成系统等。
2002.2-2004.12
FuelCell Energy 公司 化学工程师
• 负责能源动力系统的系统设计,分析和优化,包括直接燃料电池(DFC)电厂,燃料电池/燃气轮机混合电厂,煤气化/燃料电池/燃气轮机联合循环等不同先进动力系统的概念性开发和工程设计;
• 负责燃料电池电厂设备的设计,选型,运行制度制定,以及其它热工技术支持;
• 负责制定燃料电池电厂测试计划,测试数据分析,售后电厂产品运行监控及故障诊断,以及产品性能提高;
• 为高温燃料电池,燃气轮机和电厂辅助设备的过程设计和分析提供系统性能模型和计算流体力学模型,并用于系统不同阶段研发的计算分析和故障诊断。
1999.4-2002.2
美国宾西法尼亚州州立大学 机械与核能工程系 电化学引擎工程中心 博士后副研究员
• 为美国桑地亚国家实验室开发了质子交换膜燃料电池两相流动与传递的计算流体力学模型;
• 为宾西法尼亚州环境保护部和美国交通部开发了直接液体甲醇燃料电池物理模型和计算流体力学程序;
• 为Eveready电池公司开发了一个全面确定锌/二氧化锰碱性电池性能限制因素的新方法。
1998.4-1999.4
香港科技大学 化学工程系 访问学者
• 开发了各种干燥过程的传热传质模型和计算流体力学程序,包括流化床干燥,固定床干燥,和微波干燥.
1997.1-1998.4
东南大学 动力工程系 讲师
• 开发了微波冷冻干燥过程的传热传质模型和计算流体力学程序;
• 设计和建造了一套微波冷冻干燥设备,其中包括微波加热,真空,冷冻,和测控等系统;
• 讲授三门课程:热能工程专业英语,工程热力学,和热工基础实验。
• 学历
博士 热能工程,东南大学,南京,1996
硕士 工程热物理,天津大学,天津,1993
学士 工程热物理,天津大学,天津,1990
• 获奖
• 中国高校科学技术二等奖,2002 (排名第二)。
• 专利
1. Z. H. Wang and H. Ghezel-Ayagh, "Enhanced High Efficiency Fuel Cell/Turbine Power Plant," US Patent Number: 6,896,988.
2. H. Ghezel-Ayagh and Z. H. Wang, “A Coal Gas Methanation/Power Generation System,” submitted for US Patent.
3. Z. H. Wang, F. C. Jahnke, and S. Weis, “Method of Preventing Anode Exhaust Gas Pre-ignition in High Temperature Fuel Cell Plants,” invention disclosure.
论文
•1. H. Ghezel-Ayagh, J. Daly, and Z. H. Wang, “Advances in Direct Fuel Cell/Turbine Power Plant,” Proceedings of ASME Turbo Expo 2003, Atlanta, Georgia, 2003.
•2. Z. H. Wang and C. Y. Wang, "Mathematical Modeling of Liquid-Feed Direct Methanol Fuel Cells," Journal of Electrochemical Society, Vol. 150 (4), pp. A508-A519, (2003). (SCI引用次数: 36)
•3. M. M. Mench, Z. H. Wang, K. Bhatia, and C. Y. Wang, "Design of a Micro Direct Methanol Fuel Cell," Proceedings of IMECE’01, International Mechanical Engineering Congress and Exposition (IMECE), New York, NY, November, 2001.
•4. Z. H. Wang and C. Y. Wang, "Mathematical Modeling of Liquid-Feed Direct Methanol Fuel Cells," in Direct Methanol Fuel Cells, PV 2001-4, p. 286, The Electrochemical Society Proceedings Series, Pennington, NJ (2001).)
•5. Z. H. Wang and C. Y. Wang, "Two-Phase Flow and Transport in the Air Cathode of Proton Exchange Membrane Fuel Cells," J. of Power Sources, Vol. 94(1), pp. 40-50 (2001). (SCI引用次数: 153)
•6. Z. H. Wang and C. Y. Wang, "Two-Phase Flow and Transport in the Interdigitated Air Cathode of Proton Exchange Membrane Fuel Cells," The 197th Meeting of the Electrochemical Society, Toronto, 2000 (presentation); HTD-Vol. 366-1, Proceedings of ASME, Heat Transfer Division, Vol.1, pp. 27-33, ASME 2000 (full paper).
•7. Z. H. Wang, W. B. Gu and C. Y. Wang, "Simulation of Thermal Runaway in Lithium-Ion Batteries," The 196th Meeting of the Electrochemical Society, Honolulu, Hawaii, 1999.
•8. C. Y. Wang, Z. H. Wang and Y. Pan, "Two-Phase Transport in Proton Exchange Membrane Fuel Cells," HTD-Vol. 364-1, Proceedings of ASME, Heat Transfer Division, Vol.1, pp. 351-357, ASME 1999.
•9. Z. H. Wang and G. Chen, "Theoretical Study of Fluidized-Bed Drying with Microwave Heating," Industrial and Engineering Chemistry Research, Vol. 39(3), pp. 775-782 (2000). (SCI引用次数: 8)
•10. Z. H. Wang and G. Chen, "Heat and Mass Transfer in Batch Fluidized Bed Drying of Porous Particles," Chemical Engineering Science, Vol. 55(10), pp. 1857-1869 (2000). (SCI引用次数: 19)
•11. Z. H. Wang and G. Chen, "Heat and Mass Transfer in Fixed Bed Drying," Chemical Engineering Science, Vol. 54(19), pp. 4233-4243 (1999). (SCI引用次数: 11)
•12. Z. H. Wang and G. Chen, "Heat and Mass Transfer During Low Intensity Convection Drying," Chemical Engineering Science, Vol. 54(17), pp. 3899-3908 (1999). (SCI引用次数: 14)
•13. Z. H. Wang and M. H. Shi, "Microwave Freeze Drying Characteristics of Beef," Drying Technology, Vol. 17(3), pp. 433-447 (1999). (SCI引用次数: 6)
•14. Z. H. Wang and M. H. Shi, "Numerical Study on Sublimation-Condensation Phenomena During Microwave Freeze Drying," Chemical Engineering Science, Vol. 53(18), pp. 3189-3197 (1998). (SCI引用次数: 15)
•15. Z. H. Wang and M. H. Shi, "The Effects of Sublimation-Condensation Region on Heat and Mass Transfer During Microwave Freeze Drying," ASME J. Heat Transfer, Vol. 120(3), pp. 654-660 (1998). (SCI引用次数: 13)
•16. Z. H. Wang and M. H. Shi, "Sublimation-Condensation Phenomena in Microwave Freeze Drying," Science in China (series E), Vol. 41(3), pp. 321-329 (1998).
•17. Z. H. Wang and M. H. Shi, "Effects of Heating Methods on Vacuum Freeze Drying," Drying Technology, Vol. 15(5), pp. 1475-1498 (1997).
18. 王朝晖, 施明恒, “微波冷冻干燥过程中的升华冷凝现象,” 中国科学 (E缉), 第41卷, 第3期, pp. (1998).
19. 王朝晖, 施明恒, “初始饱和度对微波冷冻干燥过程传热传质的影响,” 化工学报, 第 48 卷, 第 3 期, pp. 294-299 (1997).
20. 王朝晖, 施明恒, “加热方式对微波冷冻干燥过程的影响,” 工程热物理学报, 第18卷, 第3期, pp. 336-341 (1997).
21. 王朝晖, 施明恒, “牛肉的微波冷冻干燥特性,” 南京林业大学学报, 第21卷增刊 (全国第六次干燥技术交流回论文专辑) , pp. 139-142 (1997).
22. 王朝晖, 施明恒, “非饱和含湿多孔介质微波冷冻干燥过程传热传质分析,” 化工学报, 第47卷, 第2期, pp. 131-136 (1996).
23. 王朝晖, 涂颉, “干燥过程热质传递的简化模型,” 化工学报, 第46卷, 第5期, pp. 579-585 (1995).
24. 施明恒, 王朝晖, “多孔介质微波冷冻干燥的升华-冷凝理论,” 东南大学学报, 第25卷, 第4期, pp. 92-98 (1995).
25. 涂颉, 毛润治, 田晓亮, 王朝晖, “物料干燥特性模拟,” 天津大学学报, 1993年第4期, pp. 54-60 (1993).
26. 涂颉, 王朝晖, 田晓亮, 毛润治, “生姜干燥特性的模拟研究,” 中国工程热物理学会传热传质学术会议论文集, 下册, pp. VII-13 – VII-18, 烟台 (1991).