School of Mechanical Engineering
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Gender: Male
Talent plan: New Century Excellent Talent by Education Ministry of China
Professional title: Professor,Doctoral Supervisor
Post: Leader of STATE KEY SUBJECT OF FLUID MECHANICS OF TIANJIN UNIVERSITY,Chief of Applied Mechanics Section,Director of Fluid Mechanics Laboratory
Institution: Department of Mechanics Specialty: Fluid Mechanics
Email: Personal website:
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Office: No. 135, Yaguan Road, Jinnan District,TIANJIN (300354), China
Education: Ph. D of fluid mechanics, Tianjin University, CHINA, March 1996
M. Eng. of fluid mechanics, Tianjin University, CHINA, March 1993
B. A. of applied mathematics, Tianjin University, CHINA, June 1990

Academic experience: 1996,3-1997, 11,Department of Mechanics, Tianjin University, Lecturer
1997,12-2001,6, Department of Mechanics, School of Mechanical Engineering, Tianjin University, Associate professor
2001,7- Department of Mechanics, School of Mechanical Engineering, Tianjin University, Professor

Research interest: Turbulent Flow, Flow Stability, Experimental Fluid Mechanics,Industrial Fluid Mechanics, Aerodynamics


Academic position: Director of sciences popularization working committee of Chinese Society of Theoretical and Applied Mechanics (CSTAM)
Vice chairman of flow visualization working party of Chinese Society of Aerodynamics
Member of mechanics history and methodology working party of Chinese Society of Theoretical and Applied Mechanics (CSTAM)
Member of fluid mechanics working party of Chinese Society of Theoretical and Applied Mechanics (CSTAM)

Academic achievement:

Research projects: [1]National key project “Large-scale structure and its effect on transportation properties in complex turbulence system” supported by NSFC (grant No.11332006) (2014-2018)
[2] National key project “experimental research of mechanism and its control of boundary layer bypass transition induced by wake” supported by the National Natural Science Foundation of China (NSFC) (grant No.10832001) (2009-2012)
[3]National key project “theory and simulation research of large-scale coherent structure in turbulent flow” supported by the National Natural Science Foundation of China (NSFC) (grant No.10232020) (2003-2006)
[4]National key project “turbulence and its control” supported by the National Natural Science Foundation of China (NSFC) (grant No.19732005) (1997-2001)
[5]“Research on spatial-temporal evolution dynamics for coherent structure and drag reduction mechanism under complex conditions for wall-bounded turbulence using Tomo-TRPIV" supported by NSFC (grant No.11272233)(2013-2016)
[6]“Tomo-TRPIV experimental research of dynamics system model with singular point for hairpin vortex packet structure in wall-bounded turbulence and its drag-reduction control”supported by NSFC (grant No.11572221)(2016-2019)
[7]“experimental research of mechanism and control methodology for un-equilibrium turbulent boundary layer based on multi-scale coherent eddy structures” supported by the National Natural Science Foundation of China (NSFC) (grant No.10472081) (2005-2007)
[8]“Experimental research of heating and control multi-scale structures in wall turbulence” supported by the National Natural Science Foundation of China (NSFC) (grant No.10002011) (2001-2003)
[9]The National Climbing Project “fundamental research for some key problems of fluid mechanics and aerodynamics” supported by the Ministry of Science and Technology of China (grant No.970211021)(1997-2001)

Selected publications: [1]郑小波, 姜楠, Active control of turbulent boundary layer for drag reduction with a piezoelectric oscillator, International Symposium on Flow Visualization (ISFV-17),2016.6.19-2016.6.22, Tennessee, USA
[2]XiaoboZheng, HaoZhang, SHAOQIONGYANG, NanJiang, Predetermined control of turbulent boundary layer by means of a piezoelectric oscillator, the AVIATION 2016-AIAA Aviation and Aeronautics Forum, 2016.6.13-2016.6.17, Washington, DC, USA
[3]Zhanqi Tang, Nan Jiang, Wenyi Chen, Yanhua Wu, Tomographic PIV measurements on turbulent boundary layer flow perturbed by a dynamically cylindrical element, The 14th Asian Symposium on Visualization, May 23, 2017, Beijing, China
[4]Xiaotong Cui, Jianxia Bai, Nan Jiang, Zhanqi Tang, Active Control of a Turbulent Boundary Layer by Double Piezoelectric Vibrators, The 14th Asian Symposium on Visualization, May 25, 2017, Beijing, China
[5]Nan Jiang, Zhanqi Tang, Shaoqiong Yang, Spatial topological analysis for coherent structure in turbulent boundary layer over smooth and riblet surface by tomo-TRPIV, The 12th International Symposium on Particle Image Velocimetry, June 21, 2017, Busan, Korea
[6]唐湛棋, (通讯作者: 姜楠). Statistical scale of hairpin vortex packets in the later stage of bypass transition induced by cylinder wake, 11th Asian Symposium on Visualization, 2011.6.5-2011.6.9:1-7, Niigata, Japan
[7]贾永霞, (通讯作者: 姜楠). PIV Investigation of Reynolds Stress-Relaxation-Strain Eddy Viscosity Model for Low-speed Axial Fan, 11th Asian Symposium on Visualization, 2011.6.5-2011.6.9:1-5, Niigata, Japan
[1]Tang, Zhanqi ; Wu, Yanhua ; Jia, Yongxia ; Jiang, Nan, PIV Measurements of a Turbulent Boundary Layer Perturbed by a Wall-Mounted Transverse Circular Cylinder Element,Flow, Turbulence and Combustion, p 1-25, September 19, 2017
[2]Wang, CC; Liu, JJ ; Li, JY; Guo, Y; Jiang, N (Jiang, Nan),Turbulence characterization of instantaneous airflow in an aisle of an aircraft cabin mockup, BUILDING AND ENVIRONMENT,116: 207-217,MAY 2017 DOI: 10.1016/j.buildenv.2017.02.015
[3]Huang, YX ; Wang, LP; Schmitt, FG ; Zheng, XB; Jiang, N (Jiang, Nan)Extremal-point density of scaling processes: From fractional Brownian motion to turbulence in one dimension,PHYSICAL REVIEW E, 96 (1): 012215, JUL 17 2017 DOI: 10.1103/PhysRevE.96.012215
[4]Li, JY ; Liu, JJ ; Wang, CC; Jiang, N (Jiang, Nan);PIV methods for quantifying human thermal plumes in a cabin environment without ventilation,JOURNAL OF VISUALIZATION,20(3): 535-548,AUG 2017 DOI: 10.1007/s12650-016-0404-4
[5]Huang, YX; Jiang, N (Jiang, Nan),Statistics of velocity and temperature fluctuations in two-dimensional Rayleigh-Benard convection, PHYSICAL REVIEW E,96(2): 023105 DOI: 10.1103/PhysRevE.96.023105,AUG 22 2017
[6]Feng, QS (Feng, Qiansheng),Jiang, N (Jiang, Nan) ;Multi-Scale Representation of Sleep Electroencephalogram Events for Healthy Adult Using Wavelet Transformation JOURNAL OF MEDICAL IMAGING AND HEALTH INFORMATICS,7(5): 928-933,SEP 2017 DOI: 10.1166/jmihi.2017.2117
[7]Jiang, Nan; Yao, Shi-yong; Feng, Lian-yuan;Experimental study on flow behavior of breathing activity produced by a thermal manikin, BUILDING AND ENVIRONMENT,123 : 200-210 ,OCT 2017 DOI: 10.1016/j.buildenv.2017.07.004
[8]Tang, Zhanqi;姜楠,Near fields of gasper jet flows with wedged nozzle in aircraft cabin environment,BUILDING AND ENVIRONMENT, 125: 99-110,NOV 15 2017 DOI: 10.1016/j.buildenv.2017.08.047
[9]Ou, Wenyu; Chen, Ming; Lu, Zhiming; Jiang, Nan; Liu, Yulu; Qiu, Xiang; Zhou, Quan,Huang, Yongxiang ;Taylor dispersion in two-dimensional bacterial turbulence, Physics of Fluids, 29(5) May 1, 2017
[10]Zhang, JX; Tian, HP ; Yao, ZH; Hao, PF ; Jiang, N (Jiang, Nan), Evolutions of hairpin vortexes over a superhydrophobic surface in turbulent boundary layer flow, PHYSICS OF FLUIDS, 28( 9): 095106 DOI: 10.1063/1.4962513
[11]Zhang, Jingling; Zhang, Meiyun; Jiang, Nan, Age-Related Phase Synchronization Analysis of alpha Rhythm for Normal EEG Signals,JOURNAL OF MEDICAL IMAGING AND HEALTH INFORMATICS,7(1): 1-6 ,FEB 2017
[12]Tang, Zhanqi; Guo, Yong; Cui, Xujia,Turbulent characteristics in the near fields of gasper jet flows in an aircraft cabin environment: Intermittently energetic coherent structures,BUILDING AND ENVIRONMENT,117: 73-83,MAY 15 2017 DOI: 10.1016/j.buildenv.2017.02.019
[13]Jiayu Li, Junjie Liu, Xiaodong Cao, Nan Jiang. Experimental study of transient air distribution of a jet collision region in an aircraft cabin mock-up, Energy and Buildings,127:786-793, September 1, 2016 DOI: 10.1016/j.enbuild.2016.06.039
[14]Feng, L., Yao, S., Sun, H., Jiang, N., Liu, J. TR-PIV measurement of exhaled flow using a breathing thermal manikin. Building and Environment. 2015,94:683-693
[15]张婧玲, 姜楠, Hybrid algorithm for common solution of monotone inclusion problem and fixed point problem and applications to variational inequalities, SpringerPlus, 2016. 5(5):803-816
[16]杨绍琼, 姜楠, Tomographic PIV investigation on coherent vortex structures over shark-skin-inspired drag-reducing riblets, Acta Mech. Sin., 2016. 32(2):284-294
[17]Zhanqi Tang, Nan Jiang, Xiaobo Zheng, and Yanhua Wu;Bursting process of large-and small-scale structures in turbulent boundary layer perturbed by a cylinder roughness element. Experiments in Fluids (2016), 57(5): 1-14. 10.1007/s00348-016-2174-0
[18]Zhang, JL; Jiang, N (Jiang, N.) ; Zhang, MY ; Feng, QS, Phase Average Waveform Analysis of Different Leads in Epileptic EEG Signals, JOURNAL OF MEDICAL IMAGING AND HEALTH INFORMATICS, 5(8):1811-1815, DEC 2015, DOI: 10.1166/jmihi.2015.1650
[19]Xiao-Bo Zheng, Nan Jiang, Hao Zhang,Predetermined control of turbulent boundary layer with a piezoelectric oscillator,CHINESE PHYSICS B. 2016, 25(1): 014703. DOI: 10.1088/1674-1056/25/1/014703
[20]Dai, S ; Sun, HJ; Liu, W; Guo, Y; Jiang, N (Jiang, Nan), Experimental study on characteristics of the jet flow from an aircraft gasper, BUILDING AND ENVIRONMENT 93: 278-284,NOV 2015
[21]Sui, Xiang-Kun; Jiang, Nan, A novel method of evaluating the lift force on the bluff body based on Noca's flux equation, Chinese Physics B, 24( 8): 084701, August 1, 2015
[22]Zhang, JX ; Tian, HP ; Yao, ZH; Hao, PF; Jiang, N (Jiang, Nan), Mechanisms of drag reduction of superhydrophobic surfaces in a turbulent boundary layer flow, EXPERIMENTS IN FLUIDS , 56 ( 9): 179
[23]Tian, Haiping; Zhang, Jingxian; Jiang, Nan, Effect of hierarchical structured superhydrophobic surfaces on coherent structures in turbulent channel flow, Experimental Thermal and Fluid Science, 69: 27-37, December 01, 2015
[24]Tian, HP ; Jiang, N (Jiang, Nan), Study on local topology model of low/high streak structures in wall-bounded turbulence by tomographic time-resolved particle image velocimetry, APPLIED MATHEMATICS AND MECHANICS-ENGLISH EDITION,36(9):1121-1130 DOI:10.1007/s10483-015-1978-6
[25]Zheng, Xiao-Bo; Jiang, Nan,Experimental study on spectrum and multi-scale nature of wall pressure and velocity in turbulent boundary layer, Chinese Physics B, June 1, 2015,24(6): 064702
[26]Guan Xin-Lei; Wang Wei; Jiang Nan, Influence of polymer additives on the transport process in drag reducing turbulent flow, ACTA PHYSICA SINICA, MAY 5 2015, 64( 9): 094703
[27]Yao, Shiyong; Guo, Yong; Jiang, Nan,Experimental investigation of the flow behavior of an isothermal impinging jet in a closed cabin,BUILDING AND ENVIRONMENT,84: 238-250 ,JAN 2015
[28]Zheng, Xiao-Bo; Jiang, Nan,The spatial-temporal evolution of coherent structures in log law region of turbulent boundary layer,ACTA MECHANICA SINICA, FEB 2015, 31(1): 16-24
[29]Yao, Shiyong; Guo, Yong; Jiang, Nan,An experimental study of a turbulent jet impinging on a flat surface,INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER 83 :820-832 , APR 2015
[30]Guo, Yong ; Jiang, Nan ;Yao, Shiyong,Turbulence measurements of a personal airflow outlet jet in aircraft cabin,BUILDING AND ENVIRONMENT,2014,82 : 608-617 DOI: 10.1016/j.buildenv.2014.10.007
[31]Wang Wei; Guan Xin-Lei; Jiang Nan,Convection and correlation of coherent structure in turbulent boundary layer using tomographic particle image velocimetry, CHINESE PHYSICS B, OCT 2014,23(10): 104703
[32]Wang, Wei; Guan, Xin-Lei; Jiang, Nan,TRPIV investigation of space-time correlation in turbulent flows over flat and wavy walls,ACTA MECHANICA SINICA,AUG 2014, 30(4): 468-479 DOI: 10.1007/s10409-014-0060-7
[33]Cao, Xiaodong; Liu, Junjie; Jiang, Nan; Chen, Qingyan Particle image velocimetry measurement of indoor airflow field: A review of the technologies and applications, Energy and Buildings, 69:367-380, February 2014
[34]Guan, Xin-Lei; Yao, Shi-Yong; Jiang, Nan,A study on coherent structures and drag-reduction in the wall turbulence with polymer additives by TRPIV,Acta Mechanica Sinica, 29(4): 485-493, August 2013
[35]YANG ShaoQiong, JIANG Nan,Tomographic TR-PIV measurement of coherent structure spatial topology utilizing an improved quadrant splitting method SCIENCE CHINA Physics, Mechanics & Astronomy, 2012,55(10):1863-1872
[36]Han J (Han Jian韩健), Jiang N (Jiang Nan姜楠), Dynamics evolution investigation of Mack mode instability in hypersonic boundary layer by bicoherence spectrum analysis, CHINESE PHYSICS LETTERS,29(7): 074703, JULY 2012
[37]Tang ZQ (Tang Zhan-Qi), Jiang N (Jiang Nan),Tomographic PIV investigation of coherent structures in a turbulent boundary layer flow ,Acta Mechanica Sinica,August 2012, 28(3):572-582
[38]Tang ZQ (Tang Zhan-Qi), Jiang N (Jiang Nan),Statistical scale of hairpin packets in the later stage of bypass transition induced by cylinder wake,Exps of Fluids, (2012)53:343-351
[39]Tang ZQ (Tang Zhan-Qi), Jiang N (Jiang Nan),Dynamic mode decomposition of hairpin vortices generated by a hemisphere protuberance,SCIENCE CHINA Physics, Mechanics & Astronomy, 2012,55(1):118-124
[40]Song, JA ; Jiang, N (Jiang Nan); Yang, LG , Equatorial Rossby envelope solitary waves with beta effect in a shear flow, ACTA PHYSICA SINICA , 60(2): 024701,FEB 2011
[43]Wavelet analysis to detect multi-scale coherent eddy structures and intermittency in turbulent boundary layer, Jiang Nan,Wind Tunnel and Experimental Fluid Dynamics Research, InTech OPEN ACCESS Publisher,2011,ISBN: 978-953-307-632-2
[44]Jian Han, Nan Jiang and Yan Tian,Second mode unstable disturbance measurement of hypersonic boundary layer on cone by wavelet transform,Acta Mechanica Sinica,August 2011, 27(4): 488-493
[45]YongXia Jia, ZhanQi Tang and Nan Jiang,Experimental investigation of Reynolds stress complex eddy viscosity model for coherent structure dynamics SCIENCE CHINA Physics, Mechanics & Astronomy,54(7), 1319-1327
[46]Tang ZQ (Tang Zhan-Qi), Jiang N (Jiang Nan),TR PIV Experimental Investigation on Bypass Transition Induced by a Cylinder Wake,CHINESE PHYSICS LETTERS,28(5): 054702,MAY 2011
[47]Zhang, Meiyun, Zhang, Benshu, Wang, Fenglou, Chen, Ying, Jiang, Nan,Multi-scale phase average waveform of electroencephalogram signals in childhood absence epilepsy using wavelet transformation , Neural Regeneration Research, 2010,5(10):774-780
[48]Xia, Zhenyan ,Tian, Yan, Jiang, Nan. Wavelet spectrum analysis on energy transfer of multi-scale structures in wall turbulence. APPLIED MATHEMATICS AND MECHANICS. 2009, 30(4): 435-443
[49]Xia, Zhenyan , Jiang, Nan, Tian, Yan.,Wang, Yuchun. Experimental study on the local similarity scaling of the turbulence spectrum in the turbulent boundary layer.[J]SCIENCE IN CHINA SERIES G-PHYSICS MECHANICS & ASTRONOMY. 2009, 52(6):900-908
[50]Jiang N (Jiang Nan姜楠), Liu W, Liu JH, Tian Y ,Phase-averaged waveforms of Reynolds stress in wall turbulence during the burst events of coherent structures,SCIENCE IN CHINA SERIES G-PHYSICS MECHANICS & ASTRONOMY,51(7): 857-866,JUL 2008
[51]Han J , Jiang N (Jiang Nan, Wavelet cross-spectrum analysis of multi-scale disturbance instability and transition on sharp cone hypersonic boundary layer,CHINESE PHYSICS LETTER,25(5): 1731-1733 ,MAY 2008
[52]Liu JH , Jiang N (Jiang Nan),Frequency response of near-wall coherent structures to localized periodic blowing and suction in turbulent boundary layer,CHINESE PHYSICS LETTERS,25(5): 1738-1741,MAY 2008
[53]Liu Jian-hua, Jiang Nan, Two phase of coherent structure motions in turbulent boundary layer, Chinese Physics Letters, 2007, Vol 24, No 9: 2617-2620
[54]Liu Xin(刘欣),Jiang Nan, Passive control of turbulent jet flow with wedged nozzle, Chinese Journal of Chemical Engineering, 2005, Volume 13, Number 4: 451-456
[55]Liu Jian-hua, Jiang Nan, Wang Zhen-dong, Shu Wei, Multi-scale Coherent Structures in Turbulent Boundary Layer Detected by Locally Averaged Velocity Structure Functions, Applied Mathematics and Mechanics,2005,Vol 26, No 4: 456-464
[56]Jiang Nan, Zhang Jin, Detecting multi-scale coherent eddy structure and intermittency in turbulent boundary layer by wavelet analysis, Chinese Physics Letters, 2005, Vol 22, No 8: 1968-1971
[57]Liu Wei, Jiang Nan, Three Kinds of Velocity Structure Function in Turbulent Flows, Chinese Physics Letters, 2004, Vol 21, No 10: 1989-1992
[58]Jiang Nan, Wang Yu-chun, Shu Wei, Wang Zhen-dong, Experimental study of measurement for dissipation rate scaling exponents in heated wall turbulence, Applied Mathematics and Mechanics,2002,Vol 23, No 9: 1035-1044
[59]Jiang Nan, Wang Zhen-dong, Shu Wei, Extended self-similarity scaling law of multi-scale eddy structure in wall turbulence,Applied Mathematics and Mechanics,2000,Vol 21, No 9: 1016-1023
[60]Jiang Nan, Shu Wei, Wang Zhen-dong, Burst event detection in wall turbulence by WVITA method, ACTA MECHANICA SINICA, 2000, Vol 16, No 1: 29-34
[61]Jiang Nan, Wang Zhen-dong, Shu Wei, Using wavelet transform to study the Lipschitz local singular exponent in wall turbulence, APPLIED MATHEMATICS AND MECHANICS (English Edition), 1998, Vol 19, No 10: 983-990

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