Zheng Jun
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- Doctoral Supervisor
- Master Tutor
- E-Mail:
- School/Department:State Key Laboratory of Traction Power (TPL)
- Business Address:Room 306, Hong Building, TPL, Jiuli Campus, SWJTU, Jinniu District, Chengdu City, P.R. China
- Contact Information:jzheng@swjtu.edu.cn
- Degree:Doctor's degree
- Professional Title:Associate Professor
- Alma Mater:Southwest Jiaotong University (SWJTU)
- Supervisor of Doctorate Candidates
- Supervisor of Master's Candidates
- Discipline:The Transportation
In Electrical Engineering

- ZipCode:
- OfficePhone:
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- Research
Research Field
(1)Electric Engineering: magnetic levitation theory and application, electromagnetic field calculation, electromagnetic propulsion, electromagnetic compatibility.
(2)Communication and Transportation Engineering: superconducting maglev vehicle technology and application, permanent magnet/ electrodynamics / superconducting maglev theories and technologies.
Paper Publications
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- Magnetic and levitation characteristics of bulk high temperature superconducting magnets above a permanent magnet guideway.Superconductor Science and Technology
- A Magnetic Levitation Rotating Plate Model Based on High-Tc Superconducting Technology.Cryogenics
- A General Method to Simulate the Electromagnetic Characteristics of HTS Maglev Systems by Finite Element Software.IEEE Transactions on Applied Superconductivity
- Modeling of high-Tc superconducting bulk using different Jc-T relationships over dynamic permanent magnet guideway.Materials
- Effect Laws of Different Factors on Levitation Characteristics of High-Tc Superconducting Maglev System with Numerical Solutions.Journal of Superconductivity and Novel Magnetism
Patents
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Published Books
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Research Projects
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- Key technology issues of low-speed high-temperature superconducting Maglev transportation system
- New application of rare earth materials in the levitation landscape sculpture
- Electromagnetic and levitation characteristics of pre-magnetized bulk high temperature superconductor in applied magnetic fields
- Experiment and theory of the ETT-HTS Maglev dynamics
- Research cooperation of simulation, design, and optimization of the air dynamics-magnetic force-thermal effect of the low-pressure tube superconducting Maglev