教师名录
徐心海
通讯地址:深圳市南山区西丽大学城哈工大校区G311
电子邮件:xuxinhai@hit.edu.cn
联系电话:0755-86102680

个人简介

徐心海,博士,副教授。分别于2007年和2009年在哈尔滨工业大学能源与动力工程专业取得学士和硕士学位,并于2014年在美国亚利桑那大学(The University of Arizona)机械工程专业取得博士学位。博士毕业后继续在亚利桑那大学从事了一年博士后研究。2015年9月起于哈尔滨工业大学深圳研究生院机电工程与自动化学院工作。先后在各类学术期刊上和国际会议上发表论文30余篇,其中SCI论文20余篇。

Dr. Xinhai Xu is presently an associate professor in School of Mechanical Engineering and Automation at Harbin Institute of Technology (Shenzhen), China. He received his B.S. and M.S. degrees in energy and power engineering from Harbin Institute of Technology, China (with Honors, 2007 and 2009), and his Ph.D. degree in mechanical engineering from The University of Arizona, USA (2014). After completing post-doctoral training at The University of Arizona (2014-2015), he joined the faculty at Harbin Institute of Technology (Shenzhen) in late 2015. His research interests include reforming of hydrocarbon fuel to produce hydrogen, integration of a reformer and fuel cells, simulation and modeling of flows and reactions in fuel cells, cooling of solar cells and lithium batteries, concentrating solar power systems and heat transfer fluids. He has published more than 20 papers in well-recognized journals and books. He has also presented his research in more than 10 international conferences.

研究方向

1. 氢能源制取及重整制氢反应器
2. 制氢与燃料电池一体化系统
3. 燃料电池通道设计
4. 太阳能热利用CSP系统
5. 高温传热流体HTF
6. 光伏光热PVT系统

教育经历

2009-2014  美国亚利桑那大学,机械工程,博士
2007-2009  哈尔滨工业大学,工程热物理,硕士
2003-2007  哈尔滨工业大学,热能与动力工程,学士
2005-2005  香港理工大学,机械工程,交换生

研究与工作经历

2015-至今  哈尔滨工业大学深圳研究生院,副教授
2014-2015  美国亚利桑那大学,博士后
2009-2014  美国亚利桑那大学,博士生研究助理

专业资质与学术兼职

审稿人  Progress in Energy and Combustion Science; Applied Energy; Energy Conversion and Management; Energy; Renewable Energy; International Journal of Hydrogen Energy; Journal of Cleaner Production; Fuel; Fuel Cells
博士论文外审人  PhD dissertation of University of Pretoria, South Africa
分会场主席  6th Asia-Pacific Forum on Renewable Energy (AFORE2016)
分会场主席  Applied Energy Symposium and Forum of Low-carbon Cities & Urban Energy (CUE2016)
技术委员会  International Conference on New Energy and Sustainable Development 2017
Guest Editor  Journal of Renewable Energy特刊“Solar Energy Technologies and Applications”
Guest Editor  SCI期刊International Journal of Photoenergy特刊“Innovative Applications of Advanced Solar Thermal Technologies Using Phase Change Materials”

科研项目

2011-2012  美国ONR项目:航空燃油深度脱硫的研究(参与)
2012-2014  美国ONR项目:航空燃油重整制氢为船载燃料电池APU提供燃料的研究(参与)
2014-2015  美国DOE项目:CSP电站用高温氯化盐传热流体的研究(参与)
2015-2018  哈工大(深圳)新教师科研启动项目:供燃料电池用小型制氢系统的研究(主持)
2016-2018  深圳市基础研究项目:聚光式太阳能热电站用熔融盐高温传热流体对耐蚀合金腐蚀性的研究(主持)
2017-2019  深圳市孔雀计划引进人才启动项目:与SOFC燃料电池联用的柴油自热重整制氢系统关键技术研究(主持)
2018-2021  国家自然科学基金青年基金项目:新型微通道反应器中甲醇和水蒸气传热传质与重整反应耦合制氢机理研究(主持)

科研成果及奖励

2014  Renewable Energy Reviewer Award
2015  深圳市海外高层次人才孔雀计划C类
2016  深圳市南山区领航人才C类

论文及著作

SCI论文(*为通讯作者,总影响因子87.76,被引次数428):

2017

21. J. Dong, X. Xu*, B. Xu. CFD analysis of a novel modular manifold with multi-stage channels for uniform air distribution in a fuel cell stack. Applied Thermal Engineering. 2017, 124, 286-293. (IF =3.356,JCR一区)

20. X. Xu*, P. Guo, W. Liu, W. Yang. Entropy generation and Carnot efficiency comparisons of high temperature heat transfer fluid candidates for CSP plants. International Journal of Hydrogen Energy. 2017, 42, 20316-20323. (IF =3.582,JCR二区)

19. X. Xu*, K. Shuai, B. Xu. Review on copper and palladium based catalysts for methanol steam reforming to produce hydrogen. Catalysts. 2017. 7, 183. (IF = 3.082, JCR二区)

18. X. Xu*, B. Xu, J. Dong, X. Liu. Near-term analysis of a roll-out strategy to introduce fuel cell vehicles and hydrogen stations in Shenzhen China. Applied Energy. 2017, 196, 229-237. (IF = 7.182,JCR一区)

17. S. Zhang, X. Wang, X. Xu, P. Li. Hydrogen production via catalytic autothermal reforming of desulfurized Jet-A fuel. International Journal of Hydrogen Energy. 2017, 42, 1932-1941. (IF =3.582,JCR二区)

2016
16. X. Xu, K. Vignarooban, B. Xu, K. Hsu, A. M. Kannan. Prospect and problems of concentrating solar power technologies for power generation in the desert regions. Renewable and Sustainable Energy Reviews. 2016, 53, 1106-1131. (IF=8.050,JCR一区)

15. J. Dong, X. Liu, X. Xu*, S. Zhang. Comparative life cycle assessment of hydrogen pathways from fossil sources in China. International Journal of Energy Research. 2016, 40, 2105-2116. (IF =2.598,JCR二区)

14. X. Xu*, X. Liu, B. Xu. A survey of nickel based catalysts and monolithic reformers of the onboard fuel reforming system for fuel cell APU applications. International Journal of Energy Research. 2016, 40, 1157-1177. (IF =2.598,JCR二区)

13. J. Dong, X. Xu*, B. Xu, S. Zhang. Parametric analysis of a solid oxide fuel cell auxiliary power unit operating on syngas produced by autothermal reforming of hydrocarbon fuels. Journal of Renewable and Sustainable Energy. 2016, 8, 024301. (IF =1.135,JCR三区)

12. K. Vignarooban, R. Kushagra, A. Elango, P. Badami, B. E. Mellander, X. Xu, T. G. Tucker, C. Nam, A. M. Kannan. Current trends and future challenges of electrolytes for sodium-ion batteries. International Journal of Hydrogen Energy. 2016, 41, 2829-2846. (IF =3.582,JCR二区)

2015
11. X. Xu, S. Zhang, X. Wang, P. Li. Fuel adaptability study of a lab-scale 2.5 kWth autothermal reformer. International Journal of Hydrogen Energy. 2015, 40, 6798-6808. (IF =3.582,JCR二区)

10. K. Vignarooban, X. Xu, A. Arvay, K. Hsu, A. M. Kannan. Heat transfer fluids for concentrating solar power systems – a review. Applied Energy. 2015, 146, 383-396. (IF = 7.182,JCR一区) (ESI高被引论文)

9. K. Vignarooban, X. Xu, K. Wang, E. E. Molina, P. Li, D. Gervasio, A. M. Kannan. Vapor pressure and corrosivity of ternary metal-chloride molten-salt based heat transfer fluids for use in concentrating solar power systems. Applied Energy. 2015, 159, 206-213. (IF = 7.182,JCR一区)

2014
8. X. Xu, S. Zhang, P. Li, Y. Shen. Adsorptive desulfurization of liquid Jet-A fuel at ambient conditions with an improved adsorbent for on-board fuel treatment for SOFC applications. Fuel Processing Technology. 2014, 124, 140-146. (IF = 3.752,JCR一区)

7. X. Xu, S. Zhang, P. Li, Y. Shen. Desulfurization of Jet-A fuel in a fixed-bed reactor at room temperature and ambient pressure using a novel selective adsorbent. Fuel. 2014, 117, 499-508. (IF = 4.601,JCR一区)

6. X. Xu, S. Zhang, P. Li. Autothermal reforming of n-dodecane and desulfurized Jet-A fuel for producing hydrogen-rich syngas. International Journal of Hydrogen Energy. 2014, 39, 19593-19602. (IF =3.582,JCR二区)

2013
5. X. Xu, P. Li, Y. Shen. Small scale reforming of diesel and jet fuels to make hydrogen and syngas for fuel cells: A review. Applied Energy. 2013, 108, 202-217. (IF = 7.182,JCR一区)

4. X. Xu, S. Zhang, P. Li, Y. Shen. Equilibrium and kinetics of Jet-A fuel desulfurization by selective adsorption at room temperatures. Fuel. 2013, 111, 172-179. (IF = 4.601,JCR一区)

2012
3. Y. Shen, X. Xu, P. Li. A novel potential adsorbent for ultra deep desulfurization of jet fuels at room temperature. RSC Advances. 2012, 2, 6155-6160. (IF = 3.108,JCR一区)

2. Y. Shen, P. Li, X. Xu, H. Liu. Selective adsorption for removing sulfur: a potential ultra-deep desulfurization approach of jet fuels. RSC Advances. 2012, 2, 1700-1711. (IF = 3.108,JCR一区)

2009
1. B. Li, X. Xu, Y. Liu, L. Liu. Effects of initial parameters on the internal-melt ice-on-tube while icing. Journal of Mechanical Science and Technology. 2009, 23, 1808-1812. (IF = 1.128,JCR三区)


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EI论文(*为通讯作者):

8. S. Zhang, X. Wang, P. Li, X. Xu. Producing hydrogen from Jet-A fuel in a reactor with integrated autothermal reforming and water-gas shift. Proceedings of the ASME 11th International Conference on Energy Sustainability. 2017.

7. X. Liu, S. Zhang, J. Dong, X. Xu*. A short-term analysis of hydrogen demand and refueling station cost in Shenzhen China. Energy Procedia. 2016. 104, 317-322.

6. X. Xu, S. Zhang, P. Li. Hydrogen production of a heavy hydrocarbon fuel autothermal reformer on NiO-Rh based monolithic catalysts. Proceedings of the ASME 12th Fuel Cell Science, Engineering and Technology Conference. 2014.

5. X. Xu, S. Zhang, P. Li. Desulfurization of liquid phase Jet-A fuel by selective adsorption at room temperature. Proceedings of the ASME 12th Fuel Cell Science, Engineering and Technology Conference. 2013.

4. X. Xu, M. M. Valmiki, S. Pradhan, H. Liu, P. Li. Solar thermal closed-helium brayton cycle with high temperature phase-change thermal storage. Proceedings of the ASME 4th International Conference on Energy Sustainability. 2010, 2, 627-635.

3. Y. Liu, B. Li, X. Xu, K. Wang, Z. Fu, Y. Zhou. Experimental Investigation of Using High Temperature Ground Source Heat. Proceedings of the International Conference on Energy and Environmental Technology. 2009, 1, 644-647.

2. Y. Liu, B. Li, Y. Zhou, Z. Fu, X. Xu. Study on hybrid solar energy and ground-source heat pump system. Proceedings of the International Conference on Energy and Environmental Technology. 2009, 1, 845-848.

1. Y. Liu, B. Li, X. Xu, Z. Fu. Study on the heating system combined subway exhaust heat with geothermal source heat pump. Acta Energiae Solaris Sinica. 2010, 31, 754-758.

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专著章节(*为通讯作者)

3. X. Xu*, B. Xu, T. Liu, H. Chirino. Chapter 6. Life cycle GHG emissions of concentrating solar power plants and geothermal plants. In Y.S. Lim, K.H. Chua, J. Wong (Eds.), GHG Emissions: Drivers, Sources and Impacts. New York: Nova Science Publishers, Inc. 2017. ISBN 978-1-53612-165-0.

2. D. F. Gervasio, H. Elsentriecy, L. P. Silva, A. M. Kannan, X. Xu. Chapter 4. Materials Challenges for Concentrating Solar Power. In A. Korkin, S. Goodnick, R. Nemanich (Eds.), Nanoscale Materials and Devices for Electronics, Photonics and Solar Energy. Springer International Publishing. 2015. ISBN 978-3-319-18632-0.

1. P. M. Posso, R. F. Dittler, D. Lewis, P. Juang, X. Ji, X. Xu, D. C. Lynch. Chapter 2. Review of Status, Trends, and Challenges in Working with Silane and Functional Silanes. In K. Moriguchi, S. Utagawa (Eds.), Silane: Chemistry, Applications and Performance. New York: Nova Science Publishers, Inc. 2012. ISBN 978-1-62257-432-2.

任教和任导师经历

  
最后更新:2017-09-05 15:20:39