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夏辉辉
ResearcherID
研究助理教授
力学与航空航天工程系
博士毕业于英国伦敦玛丽女王大学,主要从事微射流、液滴两相流方面的研究。
个人简介
个人简介
研究领域
微流体气液两相流动实验与模拟
学术成果 查看更多
[1] Pan YM, Wang ZB, Zhao XY, Deng WW*, Xia HH*. On axisymmetric dynamic spin coating with a single drop of ethanol, Journal of Fluid Mechanics, 2022, 951: A30.
[2] Xu CH, He WQ, Yang WW, Deng WW, Xia HH*, Controlling instabilities of electrified liquid jets via orthogonal perturbations, Physical Review Fluids, 2022, 7: 043702.
[3] Wang Z, Zhang C, Xia H, Xie Q, Deng W*, Axisymmetric thin film flow on a flat disk foil subject to intense radial electric fields, Physics of Fluids, 2022, 34(1): 012109.
[4] Chang K, Li Y, Xia HH, Chang JY, Yu BY, Du GX, Yang P, Zhao XY*, Mi BX*, Huang W*, Deng WW*, Organic Photovoltaics Printed via Sheet Electrospray Enabled by Quadrupole Electrodes, ACS Applied Materials & Interfaces, 2021, 13(47): 56375-56384.
[5] Xia HH, Yu B, Chang K, Zhao XY*, Deng WW*, Shaping electrospray deposition profile by a quadrupole: From circular to elliptical patterns, Journal of Aerosol Science, 2021, 154: 105739.
[6] Xia HH*, Ismail A, Yao J, and Stark JPW*, Scaling laws for transition from varicose to whipping instabilities in electrohydrodynamic jetting, Physical Review Applied, 2019, 014031.
[7] Ismail A*, Yao J*, Xia HH, and Stark JPW, Breakup length of electrified liquid jets: scaling laws and applications, Physical Review applied, 2018, 10: 064010.
[8] Tang GH*, Xia HH, Shi Y. Study of wetting and spontaneous motion of droplets on microstructured surfaces with the lattice Boltzmann method. Journal of Applied Physics, 2015, 117: 244902.
[9] Shi Y, Tang GH*, Xia HH, Investigation of coalescence-induced droplet jumping on superhydrophobic surfaces and liquid condensate adhesion on slit and plain fins. International Journal of Heat and Mass Transfer, 2015, 88: 445-455.
[10] Xia HH, Tang GH*, Shi Y, Tao WQ. Simulation of heat transfer enhancement by longitudinal vortex generators in dimple heat exchangers. Energy, 2014, 74: 27-36.
[11] Shi Y, Tang GH*, Xia HH. Lattice Boltzmann simulation of droplet formation in T-junction and flow focusing devices. Computers & Fluids, 2014, 90: 155-163.
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