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武汉大学动力与机械学院导师教师师资介绍简介-江海峰

本站小编 Free考研考试/2021-07-20

个人基本情况
姓名:江海峰
性别:男
出生年月:1983年3月
学历:工学博士
职称:副研究员
电子邮箱:hfjiang@whu.edu.cn

学习与工作经历
2018.10-至今,武汉大学,动力与机械学院,副研究员,硕士生导师
2015.10-2018.09,武汉大学,动力与机械学院,师资博士后,讲师
2011.09-2015.07,清华大学,热能工程系,博士
2009.09-2011.07,清华大学,热能工程系,硕士
2002.09-2007.07,重庆大学,动力工程学院,学士

主要研究方向
微纳米通道流动与传热
低品位能量高效回收与利用
纳米发电
海水淡化
纳米流体;

4. 主讲课程
传热学
工程热力学
5. 学术及主要科研成果
(1)代表性期刊论文
2021
[25] T. Wang, B. Chen, H. Jiang*, X. Shao, H. Zheng, X. Hu*. Simulations of tapered channel in multilayer graphene as reverse osmosis membrane for desalination. Journal of Wuhan University of Technology - Materials Science Edition, 2021. (武汉理工大学学报(材料科学版), SCI四区, 影响因子=0.957).
[24] G. Zhang#, T. Wu#, H. Zhou#, H. Jin, K. Liu, Y. Luo, H. Jiang*, K. Huang*, L. Huang*, J. Zhou. Rich alkali ions preintercalated vanadium oxides for durable and fast zinc-ion storage. ACS Energy Letters, 2021, 6(6): 2111-2120. (一区, 影响因子=23.101).
2020
[23] L. Huang#, Y. Wang#, R. He, X. Kong, S. Lei, Y. Liu, B. Wang, H. Jiang, H. Liu*, K, Liu, X. Hu*. Solar-driven co-generation of electricity and water by evaporation cooling. Desalination, 2020, 488: 114533. (一区, 影响因子=9.501).
[22] L. Huang#, H. Jiang#, Y. Wang, Z. Ouyang, W. Wang, B. Yang, H. Liu*, X. Hu*. Enhanced water yield of solar desalination by thermal concentrated multistage distiller. Desalination, 2020, 477: 114260. (一区, 影响因子=9.501).
[21] J. Luo#, H. Jiang#, J. Huang, H. Wang*, X. Hu*. Analysis of non-Fourier heat conduction problem with suddenly applied surface heat flux. Journal of Thermophysics and Heat Transfer, 2020, 34(2): 287-295. (四区, 影响因子=1.711).
[20] 黄璐,欧阳自强,刘辉东,王仪浦,江海峰*,胡雪蛟。新型太阳能海水淡化技术研究进展。水处理技术,2020, 46(4): 1-5.(特邀综述)
2019
[19] Z. Hong#, J. Pei#, Y. Wang, B. Cao, M. Mao, H. Liu, H. Jiang*, Q. An, X. Liu, X. Hu*. Characteristics of the direct absorption solar collectors based on reduced graphene oxide nanofluids in solar steam evaporation. Energy Conversion and Management, 2019, 199C: 112019. (一区, 影响因子=9.709).
[18] B. Chen, H. Jiang*, H. Liu, K. Liu, X. Liu, X. Hu*. Thermal-driven flow inside graphene channels for water desalination. 2D Materials, 2019, 6(3): 035018. (一区, 影响因子=7.103).
[17] H. Jiang*, L. Shi, X. Hu, Q. An. Effective thermal conductivity of carbon nanotube-based nanofluids at high temperatures. Heat Transfer Research, 2019, 50(10): 967-975. (四区, 影响因子=2.443).
[16] J. Pei, L. Huang, H. Jiang*, H. Liu, X. Liu, X. Hu*. Inhibitory effect of hydrogen ion on the copper ions separation from acid solution across graphene oxide membranes. Separation and Purification Technology, 2019, 210C: 651-658. (一区, 影响因子=7.312).
2018
[15] C. Li, P. Meng, H. Jiang*, X. Hu*. Power generation from microjet array of liquid water. Journal of Physics D: Applied Physics, 2018, 51(28): 285501. (二区, 影响因子=3.207).
[14] L. Huang, J. Pei, H. Jiang*, X. Hu*. Water desalination under one sun using graphene-based material modified PTFE membrane. Desalination, 2018, 442C: 1-7. (一区, 影响因子=9.501, 截止2021.07.09 Google Scholar引用=68次).
[13] B. Chen, H. Jiang*, X. Liu, X. Hu*. Water transport confined in graphene oxide channels through rarefied effect. Physical Chemistry Chemical Physics, 2018, 20(15): 9780-9786. (二区, 影响因子=3.676, 封面文章).
[12] L. Huang, J. Pei, H. Jiang*, C. Li, X. Hu*. Electricity generation across graphene oxide membranes. Materials Research Bulletin, 2018, 97C: 96-100. (三区, 影响因子=4.641).
2017
[11] H. Liu, X. Zhang, Z. Hong, Z. Pu, Q. Yao, J. Shi, G. Yang, B. Mi, B. Yang, X. Liu, H. Jiang*, X. Hu*. A bioinspired capillary-driven pump for solar vapor generation. Nano Energy, 2017, 42C: 115-121. (一区, 影响因子=17.881, 截止2021.07.09 Google Scholar引用=88次).
[10] B. Chen, H. Jiang*, X. Liu, X. Hu*. Molecular insight into water desalination across multilayer graphene oxide membranes. ACS Applied Materials & Interfaces, 2017, 9(27): 22826-22836. (一区, 影响因子=9.229, 截止2021.07.09 Google Scholar引用=77次).
[9] X. Zhang, W. Kan, H. Jiang, Y. Chen, T. Cheng, H. Jiang*, X. Hu*. Capillary-driven low grade heat desalination. Desalination, 2017, 410C: 10-18. (一区, 影响因子=9.501).
[8] B. Chen, H. Jiang*, X. Liu, X. Hu*. Observation and analysis of water transport through graphene oxide interlamination. The Journal of Physical Chemistry C, 2017, 121(2): 1321-1328. (二区, 影响因子=4.126, 截止2021.07.09 Google Scholar引用=56次).
2016
[7] J. Pei, X. Zhang, L. Huang, H. Jiang*, X. Hu*. Fabrication of reduced graphene oxide membranes for highly efficient water desalination. RSC Advances, 2016, 6(104): 101948-101952. (二区, 影响因子=3.361).
2015
[6] H. Jiang, Q. Zhang, L. Shi*. Effective thermal conductivity of carbon nanotube-based nanofluids. Journal of the Taiwan Institute of Chemical Engineers, 2015, 55C: 76-81. (二区, 影响因子=5.876, 截止2021.07.09 Google Scholar引用=40次).
[5] H. Jiang, Q. Xu, C. Huang, L. Shi*. Effect of temperature on the effective thermal conductivity of n-tetradecane based nanofluids containing copper nanoparticles. Particuology, 2015, 22C: 110-114. (三区, 影响因子=3.067, 截止2021.07.09 Google Scholar引用=30次).
[4] H. Jiang, Q. Xu, C. Huang, L. Shi*. The role of interfacial nano-layer in the enhanced thermal conductivity of carbon nanotube-based nanofluids. Applied Physics A, 2015, 118(1): 197-205. (三区, 影响因子=2.584, 截止2021.07.09 Google Scholar引用=39次).
2014
[3] H. Jiang, H. Li, Q. Xu, L. Shi*. Effective thermal conductivity of nanofluids considering interfacial nano-shells. Materials Chemistry and Physics, 2014, 148(1-2): 195-200. (二区, 影响因子=4.094, 截止2021.07.09 Google Scholar引用=45次).
[2] H. Jiang, H. Li, C. Zan, F. Wang, Q. Yang, L. Shi*. Temperature dependence of the stability and thermal conductivity of an oil-based nanofluid. Thermochimica Acta, 2014, 579C: 27-30. (二区, 影响因子=3.115, 截止2021.07.09 Google Scholar引用=67次).
2012
[1] 江海峰,安青松*,史琳。HFC32/PVE的材料相容性实验研究。工程热物理学报,2012, 33(7): 1101-1104. (EI).

(2)主持的科研项目
主持项目11
11,中央高校基本科研业务费专项基金—国防项目重大培育类(**gf0010,2021.01-2022.12);
10,国防科技项目基金(2019.12-2021.12);
9,武汉大学人才计划科研启动基金(2018.10-2021.09);
8,国家自然科学基金青年基金(**,2018.01-2020.12);
7,湖北省青年科技晨光计划(A类,2018.01-2018.12);
6,湖北省自然科学基金面上项目(2018CFB470,2018.01-2019.12);
5,中国博士后国际交流计划学术交流项目(2018.01-2018.12);
4,中国博士后科学基金特别资助项目(2018T110796,2018.01-2019.12);
3,中国博士后科学基金面上项目(2017M612498,2017.01-2018.12);
2,水力机械过渡过程教育部重点实验室开放基金(2016.01-2016.12);
1,中央高校基本科研业务费专项基金—青年项目人才类(**kf0023,2016.01-2017.12);
作为骨干参与项目12
(最后更新时间为2021年07月09日)

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