High Voltage and Insulation Technology Research Institute
Zhang Yuantao
Published on: July 20, 2017 15:24    Author:    点击:[]

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High Voltage and Insulation Technology Research Institute

Academic Identity

 

Work experience

2015.4-2016.4 Princeton University (Princeton University), visiting scholar;

2009.10-2015.4 School of Electrical Engineering, Shandong University, associate professor, professor;

2006.8-2009.9 Loughborough University, UK (Loughborough   University,Postdoctoral fellow;

2001.7-2006.7 Dalian University of Technology, PhD;

1995.7-1999.7 Shandong University of Science and Technology, Bachelor.

Personal information

Name

Zhang Yuantao

Gender

Male

Date of birth

1976.6

Place of Origin

 

Professional title

Professor

Position

 

Telephone

81696307

Email

ytzhang@sdu.edu.cn

yuantaozhang@gmail.com

 

 

Research direction

Gas discharge and plasma;

Computing high voltage engineering;

Plasma and biological interaction

Academic works

Main journal articles:

1.      Y. T.   Zhang*, Y. Y. Chi, and J. He, Numerical simulation on the production of   reactive oxygen species in atmospheric pulse-modulated RF discharges with   He/O2 mixtures, Plasma Process. Polym. 11, 639-646 (2014)

2.      Y. Y.   Chi, and Y. T. Zhang*, Theoretical study on the characteristics of   atmospheric radio frequency discharges by altering gap electrode, Plasma Sci.   Technol. 16,6,582-587 (2014)

3.      J. He,   and Y. T. Zhang*, Generation of reactive oxygen species in Helium-Oxygen   radio-frequency discharges at atmospheric pressure, IEEE Tran. Plasma Sci. 412979-2986 2013

4.      J. He,   J. Hu, D. Liu, and Y. T. Zhang*, Experimental and numerical study on the   optimization of pulse modulated radio-frequency discharges, Plasma Sources   Sci. Technol. 22, 035008 (2013)

5.      Y. T.   Zhang*, J. Lou, Q.Q. Li, and Q. M. Li, Electrode gap effects on the electron   density and electron temperature in atmospheric radio frequency discharges,   IEEE Tran. Plasma Sci. 41(3), 414-420 ( 2013)

6.      Y. T.   Zhang*, and J. He, Frequency effects on the production of reactive oxygen   species in atmospheric radio frequency helium-oxygen discharges, Phys.   Plasmas, 20, 13502 ( 2013)

7.       J. He,   and Y. T. Zhang*, Modeling study on the generation of reactive oxygen species   in atmospheric radio frequency helium-oxygen discharges, Plasma Process.   Polym. 9, 919928   (2012) (Cover article)

8.      Y. T.   Zhang*, and W. L. Shang, Frequency scaling laws of plasma bulk in atmosphere   radio frequency discharges, Plasma Process. and Polym., 9,513-521 (2012)

9.      J. Lou,   and Y. T. Zhang*, Analytical and numerical Study on the characteristics at   the α-γ transition point in radio-frequency helium discharges at atmospheric   pressure, IEEE Tran. Plasma Sci. 4, 274-279 (2013)

10.   Y. T. Zhang*, and G. Lei,   Numerical Simulation on the Discharge Structures in Atmospheric He/O2 RF   Microplasmas, IEEE Tran. Plasma Sci. 42(10)3321-3327 (2014)

 

Co-edited works:

"Atmospheric Pressure Gas Discharge and Its Plasma Application",Complete Chapter 2 "Numerical Simulation of Atmospheric Pressure RF Gas Discharge"

"Core Key Technologies and Application Prospects of Atmospheric Pressure Discharge Plasma"

Undertake scientific research projects

       Based onAMARResearch on fast numerical simulation of atmospheric pressure pulse discharge plasma using algorithm,National Natural Science Foundation of China

       Theoretical study on the interaction between atmospheric pressure plasma and cells,National Natural Science Foundation of China

       Kinematic simulation study on the generation and optimization of active particles in atmospheric pressure pulse discharge,Open project of the State Key Laboratory of Strong Electromagnetic Engineering and New Technologies

       Numerical simulation study on the stability and activity of atmospheric pressure pulse discharge plasma,Shandong Provincial Natural Science Foundation

       New microwave plasma light source andLEDLight source technology research, horizontal project

       Theoretical study on the interaction mechanism between plasma and cells,Shandong University Basic Research Funds Interdisciplinary Project

Academic Type

Academic, professional

 

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