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上海交通大学电气工程系导师教师师资介绍简介-洪智勇

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洪智勇
电气工程系 研究员,博士生导师
研究领域
超导材料及应用技术
联系方式
地址:上海市闵行区东川路800号上海交通大学电信群楼1-345室
邮编:200240
电子邮件:zhiyong.hong@sjtu.edu.cn
洪智勇,上海交通大学电子信息与电气工程学院副教授,博士生导师,2010年度上海市****,入选2011年度上海市浦江人才计划。2003年毕业于上海交通大学电气工程系,获学士学位,之后赴英国留学,2004年于英国诺丁汉大学获硕士学位,2007年于英国剑桥大学获硕士、博士学位。博士毕业后于英国剑桥大学工程系及麦德林学院任助理研究员3年。2010年末回国工作,主持建设国家能源智能电网(上海)研发中心应用超导实验室。
洪智勇的主要研究方向是高温超导应用技术,在英国剑桥大学共完成超导应用领域科研课题9项,总经费52万英镑(约合540****民币), 其中军工领域课题2项。研究领域包括超导材料电磁仿真模型、超导限流器、超导电机等方面。回国后主持国家自然科学基金、上海市科委重点项目等多项课题,至2010年来累计主持科研经费400余万。教学方面主持985三期交叉学科课程建设项目并主讲“高温超导材料与应用技术”硕士全英文课程。
洪智勇在国际期刊和会议共发表论文43篇,其中38篇被SCI收录,其中第一作者论文16篇, 12篇被SCI收录。其论文被SCI期刊他引共67次,单篇文章最高引用次数40次。以第一发明人身份获得国际专利一项。
教育背景
硕士、博士,英国剑桥大学,2007
硕士,英国诺丁汉大学,2004
学士,上海交通大学,2003
工作经历
2011-现在:上海交通大学,副教授
2007-2010:英国剑桥大学,工程系,麦德林学院,助理研究员
主讲课程
F031604: 超导材料与应用技术(硕士课程)
主要在研科研项目
1. 应用于电阻型超导限流器的第二代高温超导带材失超传播特性研究
2. 第二代高温超导过流失超机理的模型和实验研究
3. 10kV电阻型超导限流器样机制造及挂网运行示范工程建设
4. 第二代高温超导带材规模化生产成套装备研制
主要论文
Z. Hong, A.M. Campbell and T.A. Coombs, “Numerical solution of critical state in superconductivity by finite element software,” Supercond. Sci. Technol. 19 (2006)1246-1252
Z. Hong, A.M. Campbell and T.A. Coombs, “Computer Modelling of Magnetisation in High Temperature Bulk Superconductors,” IEEE trans on Applied Superconductivity, Vol. 17 issue 2 3761 (June 2007)
Z. Hong, Q. Jiang, R. Pei, A.M. Campbell and T.A. Coombs, “A numerical method to estimate AC loss in superconducting coated conductors by finite element modelling,” Supercond. Sci. Technol. 20 (2007)331-337
Z. Hong, Ph. Vanderbemden, R. Pei, Y. Jiang, A.M. Campbell, T.A. Coombs, “The Numerical Modelling and Measurement of Demagnetization Effect in Bulk YBCO Superconductors Subjected to Transverse Field” IEEE trans on Applied Superconductivity Vol. 18, No. 2 1561-1564 (June 2008)
Z. Hong, L. Ye, Y. Jiang, R. Pei, A.M Campbell and T. A. Coombs, “A two-dimensional finite element method to calculate the AC loss in superconducting cables, wires and coated conductors,” Journal of Physics: Conference Series 97 (2008) 012117
Z Hong, L Ye, M Majoros, A M Campbell and T.A. Coombs, “Numerical estimation of ac loss in MgB2 wires in self-field condition” Journal of Superconductivity and Novel Magnetism (2008) 21: 205–211
Z. Hong, Y. Jiang, R. V. Viznichenko and T. A. Coombs, “The recent investigation and engineering application of YBCO bulk materials” Invited Review Article on Journal of the Korea institute of applied superconductivity and cryogenics, Vol. 10, No. 2, (2008) , pp. 1-11
Z. Hong, Y. Jiang, R. Pei, W. Yuan, R. Marchant, T. A. Coombs, “Numerical Analysis of the Demagnetisation Effect in a Superconducting Machine with Bulk HTS Material on the Rotor” IEEE trans on Applied Superconductivity, vol. 19, No 3 (2009), pp. 2897-2900
Z. Hong, R. Deodhar, T. Maruyama, S. Iwasaki, T.A. Coombs, “A compact superconducting motor with novel stator windings for vehicle applications” Journal of Superconductivity and Novel Magnetism, (2010) 23: 381–389
Z. Hong, T.A. Coombs, “Numerical Modelling of AC Loss in Coated Conductors by Finite Element Software Using H Formulation” Journal of Superconductivity and Novel Magnetism, (2010) Vol 23, No 8, 1551-1562
Z. Hong, W. Yuan, M. Ainslie, Y. Yan, R. Pei, and T. A. Coombs, “AC Losses of Superconducting Racetrack Coil in Various Magnetic Conditions” IEEE trans on Applied Superconductivity, vol. 21, No. 3, Pages: 2466 - 2469 (2011)
Z. Hong, Z. Jin, M. Ainslie, J. Sheng, W. Yuan, T. A. Coombs, “Numerical Analysis of the Current and Voltage Sharing Issues for Resistive Fault Current Limiter Using YBCO Coated Conductors” IEEE trans on Applied Superconductivity, vol. 21, No. 3, Pages: 1198 - 1201 (2011)
Z. Hong, J. Sheng, J. Zhang, B. Lin, L. Ying, Y. Li and Z. Jin, “The Development and Performance Test of a 10 kV Resistive Type Superconducting Fault Current Limiter” IEEE trans on Applied Superconductivity, Volume: 22 , Issue: 3
Page(s): ** (2012)
L. Ying, J. Sheng, B. Lin, L. Yao, J. Zhang, Z. Jin, Y. Li, Z. Hong, “AC loss and Contact Resistance of Resistive Type Fault Current Limiter Using YBCO Coated Conductors” IEEE trans on Applied Superconductivity, Volume: 22 , Issue: 3, Page(s): ** (2012)
J. Sheng, B. Lin, L. Ying, L. Yao, J. Zhang, Y. Li, Z. Hong ,Z. Jin. “Electrical-thermal Coupled Finite Element Model of High Temperature Superconductor for Resistive Type Fault Current Limiter”, IEEE trans on Applied Superconductivity, Volume: 22 , Issue: 3, Page(s):** (2012)
B. Lin, L. Ying, J. Sheng, J. Zhang, L. Yao, Y. Li, Z.Jin, Z. Hong “Test of Maximum Endurable Quenching Voltage of YBCO-coated Conductors for Resistive Superconducting Fault Current Limiter”, IEEE trans on Applied Superconductivity, Volume: 22 , Issue: 3, Page(s): ** (2012)
Coombs T.A., Samad I., Hong Z., Eves D., Rastogi A. “Meissner-levitated micro-systems” , In Proceedings of 7th European Conference on Applied Superconductivity EUCAS 2005, Vienna, Austria
Q. Jiang, M.Majoros, Z. Hong, A.M.Campbell, T.A.Coombs, “Design and AC loss analysis of a superconducting synchronous motor,” Supercond. Sci. Technol. 19 (2006) 1164–1168
Ph. Vanderbemden, Z. Hong, T.A. Coombs, S. Denis, M. Ausloos. J. Schwartz, I.B. Rutel, N. Hari Babu, D.A. Cardwell and A.M. Campbell, ” Behavior of bulk high-temperature superconductors of finite thickness subjected to crossed magnetic fields,” Physical Review B 75,174515(2007)
Ph. Vanderbemden, Z. Hong, T.A. Coombs, M. Ausloos, N. Hari Babu, D.A. Cardwell and A.M. Campbell, “ Remagnetization of bulk high-temperature superconductors subjected to crossed and rotating magnetic fields” Supercond. Sci. Technol. 20 (2007) s174-s183.
Y. Jiang, R. Pei, Q. Jiang, Z. Hong, T.A. Coombs, “Control of a superconducting synchronous motor”, Supercond. Sci. Technol. 20 (2007)392-396
Y Jiang, R Pei, Z Hong, J Song, F Fang and T A Coombs, “Design and control of a superconducting permanent magnet synchronous motor” Supercond. Sci. Technol. 20 No 7 (July 2007) 585-591
R. Pei, A, Velichko, M. Majoros, Y. Jiang, R. Viznichenko, Z. Hong, R. Marchant, A. M. Campbell and T. A. Coombs, “Ic and AC loss of 2G YBCO tape measurement for designing and fabrication of an HTS motor” IEEE trans on Applied Superconductivity Vol. 18, No. 2 1236-1239 (June 2008)
T.A. Coombs, Z. Hong, X. Zhu, G. Krabbes, “A novel heat engine for magnetising superconductors” Supercond. Sci. Technol. 21 (2008) 034001
T.A. Coombs, Z. Hong, X. Zhu, “A Thermally Actuated Superconducting Flux pump” Physica C, Vol 468, Issue 3, 2008, 153-159.
Y Jiang, R Pei, W Xian, Z Hong and T A Coombs, “The design, magnetization and control of a superconducting permanent magnet synchronous motor” Supercond. Sci. Technol. 21 065011 (2008)
R Viznichenko, A V Velichko, Z Hong and T A Coombs “Advantage of superconducting bearing in a commercial flywheel system,” J. Phys.: Conf. Ser. 97 (2008) 012120
Y Jiang, R Pei, Z Hong, Q Jiang and T A CoombsDesign of an HTS motor,” J. Phys.: Conf. Ser. 97 (2008) 012123
R. Pei, A. Velichko, Z. Hong, Y. Jiang, W. Yuan, A. M. Campbell and T. A. Coombs, “Numerical and Experimental Analysis of Ic and AC Loss for Bent 2G HTS Wires Used in an Electric Machine” IEEE trans on Applied Superconductivity, vol. 19, No 3 (2009), pp. 3356 - 3360
Y Jiang, R. Pei, W. Xian, Z. Hong, W. Yuan, R. Marchant, and T. A. Coombs, “Magnetisation Process of an HTS Motor and the Torque Ripple Suppression” IEEE trans on Applied Superconductivity, vol. 19, No 3 (2009), pp. 1644-1647
T. A. Coombs, Z. Hong, Y. Yan, C.D. Rawlings, “Superconductors: The Next Generation of Permanent Magnets” IEEE trans on Applied Superconductivity, vol. 19, No 3 (2009), pp. 2169-2173
M.D. Ainslie, Y. Jiang, W. Xian, Z. Hong, W. Yuan, R. Pei, T.J. Flack and T.A. Coombs, “Numerical analysis and finite element modelling of an HTS synchronous motor” Physica C, doi:10.1016/j.physc.2010.05.200
W. Yuan, W. Xian, M. Ainslie, Z. Hong, Y. Yan, R. Pei, Y. Jiang, and T. A. Coombs, “Design and Test of a Superconducting Magnetic Energy Storage (SMES) Coil” IEEE trans on Applied Superconductivity, vol. 20, No. 3, (2010)
Yu Yan; Zhiyong Hong; Quan Li; Wei Xian; Weijia Yuan; Coombs, T.A.Thermally “Actuated Magnetization Method in High Temperature Superconductor Bulks” IEEE trans on Applied Superconductivity, vol. 20, No. 3, Pages: 1823 - 1826 (2010)
Weijia Yuan,A M Campbell,Z Hong,M D AinslieandT A Coombs, "Comparison of AC losses, magnetic field/current distributions and critical currents of superconducting circular pancake coils and infinitely long stacks using coated conductors” Supercond. Sci. Technol.** (2010)
Yukihiro Murata, Zhiyong Hong, Yu Yan and Timothy Coombs, “Coupled Thermal-Magnetic Analysis on Thermally Actuated Superconducting Flux Pump” IEEE trans on Applied Superconductivity Vol. 21, No. 3 2291-2295
R. Pei, R. Viznichenko, M. D. Ainslie, Z. Hong, W. Xian, L. Zeng, W. Yuan and T. A. Coombs,” The Ic Behavior of 2G YBCO Tapes under DC/AC Magnetic Fields at Various Temperatures”, IEEE trans on Applied Superconductivity Vol. 21, No. 3 3226-3229
T.A. Coombs, Z.Hong, Y.Yan,” Methods of patterning magnetic fields using bulk superconductors”, IEEE trans on Applied Superconductivity Vol. 21, No. 3 1572-1576
Yu Yan, Chiahao Hsu, Zhiyong Hong, Wei Xian, Weijia Yuan, and T. A. Coombs,” A Novel Design of Thermally Actuated Magnetisation Flux Pump for High Temperature”, IEEE trans on Applied Superconductivity Vol. 21, No. 3 1568-1572
Weijia Yuan, M. D. Ainslie, W. Xian, Z. Hong, Y. Yan, R. Pei and T. A. Coombs,” Theoretical and experimental studies on Jc and AC losses of 2G HTS coils Superconducting Bulks” IEEE trans on Applied Superconductivity Vol. 21, No. 3 2441-2445
M.D. Ainslie, V.M. Rodriguez-Zermeno, Z. Hong, W. Yuan, T.J. Flack, T.A. Coombs, "An improved FEM model for computing transport AC loss in coils made of RABiTS YBCO coated conductors for electric machines," Supercond. Sci. Technol. 24 (2011) 045005 (8pp)
M.D. Ainslie, W. Yuan, Z. Hong, R. Pei, T.J. Flack, T.A. Coombs, "Modeling and Electrical Measurement of Transport AC Loss in HTS-based Superconducting Coils for Electric Machines," IEEE Trans. Appl. Supercond., Vol. 21, No. 3, p. 3265-3268, 2011
M.D. Ainslie, T.J. Flack, Z. Hong, T.A. Coombs, "Comparison of First- and Second-Order 2D Finite Element Models for Calculating AC Loss in High Temperature Superconductor Coated Conductors," COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering, Vol. 30, Iss. 2,p. 762-774, 2011




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