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齐成      助理教授

性别:

邮箱: cqi@szu.edu.cn

办公室: S624

人才称号:

最终学位: 博士

办公电话:

导师资格:

研究领域:

流体力学,电渗流

主讲本科课程:

主讲研究生课程:

教育背景:

香港大学,机械工程系,博士学位(2012/09 – 2016/09)
华中科技大学,船舶与海洋工程系,学士学位(2008/09 – 2012/07)

工作履历:

助理教授,机械工程系,深圳大学(2018/05 – 至  今)
讲师、副教授,工程结构与力学系,武汉理工大学(2017/01 – 2018/04)
助理研究员,机械工程系,香港大学(2016/09 – 2017/01)

代表期刊论文:

[1].    Qi, C. and Wu, C.F. “Electromagnetohydrodynamic flow in a rectangular microchannel,” Sensors & Actuators: B. Chemical, Vol. 263, pp. 643–660, (2018).
[2].    Qi, C. and Ng, C.O. “Rotating electroosmotic flow in a non-uniform microchannel,” Meccanica, Vol. 53, pp. 2105-2120, (2018).
[3].    Qi, C. and Ng, C.O. “Electroosmotic flow of a two-layer fluid in a slit channel with gradually varying wall shape and zeta potential,” International Journal of Heat and Mass Transfer, Vol. 119, pp. 52–64, (2018).
[4].    Qi, C. and Ng, C.O. “Rotating electroosmotic flow of an Eyring fluid,” Acta Mechanica Sinica, Vol. 33, No. 2, pp. 295–315, (2017).
[5].    Qi, C. and Ng, C.O. “Rotating electroosmotic flow of viscoplastic material between two parallel plates,” Colloids and Surfaces A: Physicochemical and Engineering Aspects, Vol. 513, pp. 355–366, (2017).
[6].    Ng, C.O. and Qi, C. “Electro-osmotic flow in a rotating rectangular microchannel,” Proceedings of the Royal Society A, Vol. 471, 20150200, (2015).
[7].    Qi, C. and Ng, C.O. “Electroosmotic flow of a power-law fluid in a slit microchannel with gradually varying channel height and wall potential,” European Journal of Mechanics B/Fluids, Vol. 52, pp. 160–168, (2015).
[8].    Qi, C. and Ng, C.O. “Electroosmotic flow of a power-law fluid through an asymmetrical slit microchannel with gradually varying wall shape and wall potential,” Colloids and Surfaces A: Physicochemical and Engineering Aspects, Vol. 472, pp. 26–37, (2015).
[9].    Ng, C.O. and Qi, C. “Electroosmotic flow of a power-law fluid in a non-uniform microchannel,” Journal of Non-Newtonian Fluid Mechanics, Vols. 208–209, Issues 6–7, pp. 118–125, (2014).
[10].    Ng, C.O. and Qi, C. “Electroosmotic flow of a viscoplastic material through a slit channel with walls of arbitrary zeta potential,” Physics of Fluids, Vol. 25, Issue 10, 103102, (2013).