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昆明理工大学建筑工程学院导师教师师资介绍简介-Prof.YANYan(闫妍-博导简介)

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Prof.YAN Yan
Prof.YAN Yan
Email:yanyankm@126.com
Academic Qualifications
1999.9 – 2003.6,BS,Jilin Normal University, Mathematics and Applied Mathematics
2003.9 – 2005.6,MS, Kunming University of Science and Technology, Applied Mathematics
2005.9 – 2008.6,Ph.D. Kunming University of Science and Technology, Engineering Mechanics
Working Experience
2011.8To date, Professor, Department of EngineeringMechanics, Kunming University of Science and Technology, China.
2016.7– 2017.7, Visiting scholar, Department of Aerospace and Engineering Mechanics,University of Cincinnati, USA.
2009.8 – 2011.7, AssociateProfessor, Department of EngineeringMechanics , Kunming University of Science and Technology, China.
2008.7 – 2009.7, AssistantProfessor, Department of EngineeringMechanics , Kunming University of Science and Technology, China.
2006.9 – 2007.2, Visiting student, College , CityUniversity of Hong Kong, China.
Research Fields
1. Bifurcation theory of dynamical systems and engineering application
2. System dynamics of micro/nano conveying tube
3. Multi-physics coupling mechanics of micro/nano electromechanical systems
Part-time Academic Job
1. Editor for Journal of Acoustics and Vibration
2.Reviewer for Applied mathematical modeling, Nonlinear Vibration and Control, Journal of Sound and Vibration, Meccanica, etc.
Research Fundings
[1] “Research on the theoretical modeling and nonlinear vibrating characteristics of fluid-conveyed multi-walled carbon under electromechanical coupling”, 2017-2020,No:**, Granted by NSFC, Preside.
[2] “Research on the dynamical behaviors of fluid-filled multi-walled carbon nanotubes based on an atomistic-based theory”, 2012-2015, No: **, Granted by Natural Science Fund of China, Preside.
[3] “Research on the Mechanism of Tip Clearance Flow in Runner of Francis Turbine”, 2010-2013, No: **,Granted by NSFC, Preside.
[4] “Study on the mechanism of fluid structure interaction in a multi-wall carbon nanotube”, 2010-2012, No: **, Granted by Natural Science Fund of China, Preside.
[5] “Flow characteristics of a Newtonian fluid in a double-walled carbon nanotube”, 2010-2012,No: 011,Granted by Ministry of Education of China, Preside.
[6] “Study on the dynamic characteristics of the fluid-conveyed multi-walled carbon nanotubes”, 2009-2011, No: 2008A037M,Granted by Natural Science Fund of Yunnan Province, Preside.
Honors and Awards
[1] Winners:Wenquan Wang;Project name : Excellent Doctoral Dissertation Award in Yunnan Province, Awards year: 2011
Academic Achievements
Papers:
[1] Wen-Quan Wang, Yan Yan, Fang-Bao Tian, A simple and efficient implicit direct forcing immersed boundary model for simulations of complex flow, Applied Mathematical Modelling 43(1): 287–305, 2017.
[2] Yan Yan, Wenquan Wang, Axisymmetric vibration of SWCNTs in water with arbitrary chirality based on nonlocal anisotropic shell model, Applied Mathematical Modelling, Applied Mathematical Modelling, 39(10-11): 3016–3023, 2015.
[3] Yan Yan, Weizhong Li, Wenquan Wang, The effect of wettability on the dynamical behaviors of single-walled carbon nanotube, Advances in Mechanical Engineering, Volume 2015, Article ID 138249.
[4] Wenquan Wang, Yin Rui, Dongwei Hao, Yan Yan, Modeling and Simulation of Fish-Like Swimming in a Straight-Line Swimming State Using Immersed Boundary Method, Advances in Mechanical Engineering, Volume 2014, Article ID 489683.
[5] Yan Yan, Weizhong Li, Wenquan Wang. The environmental effect on the dynamical behaviors of single-walled carbon nanotube in water, Advances in Mechanical Engineering, Volume 2014, Article ID 980154.
[6] Yan Yan, Wenquan Wang, Lixiang Zhang, Free vibration of the fluid-filled single-walled carbon nanotube based on a double shell-potential flow model, Applied Mathematical Modelling, 36(12): 6146-6153, 2012.
[7] Yan Yan, Wenquan Wang, Lixiang Zhang, Applied multiscale method to analysis of nonlinear vibration for double-walled carbon nanotubes, Applied Mathematical Modelling, 35(5): 2279–2289, 2011.
[8] Wenquan Wang, Lixiang Zhang, Yan Yan, Yakun Guo, Finite Element Analysis of Turbulent Flows Using LES and Dynamic Subgrid-Scale Models in Complex Geometries,Mathematical Problems in Engineering, Volume 2011, Article ID 712372.
[9] Yan Yan, Lixiang Zhang, Wenquan Wang,Xiaoqiao He, CMWang, Dynamical behaviors of fluid-filled multi-walled carbon nanotubes,International Journal of Modern Physics B,24(24): 4727-4739, 2010.
[10] Yan Yan, Wenquan Wang, Lixiang Zhang,Nonlocal effect on axially compressed buckling of triple-walled carbon nanotubes under temperature field, Applied Mathematical Modelling,34(11): 3422–3429, 2010.
[11] Yan Yan, *Wenquan Wang, Lixiang Zhang, Study on the nonlinear vibration of SWCNTs with initial axial stress based on the bifurcation theory of dynamical systems, Modern Physics Letter B,24(18): 1979-1986, 2010.
[12] Yan Yan, Wenquan Wang, Lixiang Zhang,Noncoaxial vibration of fluid-filled multi-walled carbon nanotubes,Applied Mathematical Modelling,34(1): 122–128, 2010.
[13] Wenquan Wang, Yan Yan, Strongly coupling of partitioned fluid–solid interaction solvers using reduced-order models, Applied Mathematical Modelling, 34(12): 3817-3830, 2010.
[14] Wang Wenquan, Zhang Lixiang, Yan Yan, Guo yakun, Turbulent flow simulation using LES with dynamical mixed one-equation subgrid models in complex geometries, International Journal for Numerical Methods in Fluids, 63(5): 600–621, 2010.
[15] Yan Yan, Wenquan Wang, Lixiang Zhang, Nonlinear vibration characteristic of fluid-filled double-walled carbon nanotubes, Modern Physics Letter B,23(22): 2625-2636, 2009.
[16] Yan Yan, Xiaoqiao He, Lixiang Zhang, CM Wang,Dynamic behavior of Triple-walled Carbon Nanotubes Conveying Fluid, Journal of Sound and Vibration, 319(3-5): 1003–1018, 2009.
[17] Yan Yan, Wenquan Wang, Lixiang Zhang,Dynamical behaviors of fluid-conveyedmulti-walledcarbon nanotubes,Applied Mathematical Modelling,33(3):1430–1440, 2009.
[18] Yan Yan, Lixiang Zhang, Wenquan Wang,Dynamical mode transitions ofsimply supported DWCNTs based on anelastic shell model, Journal of Applied Physics,103: 113523, 2008.
[19] Yan Yan, Lixiang Zhang, Wenquan Wang,CM Wang, Dynamical properties of multi-walled carbon Yan Yan, Wenquan Wang, Lixiang Zhang, Small scale effect on the free vibration of multi-walled carbon nanotubes, Modern Physics Letter B,22(28): 2769-2777, 2008.
[20] Wang Wenquan, Zhang Lixiang, Yan Yan, Numerical simulation of flow with large-amplitude oscillation of solid boundaries by penalty finite element formulations, International Journal of Modern Physics B, 22(24): 4205-4216, 2008.
[21] Yan Yan, Xiaoqiao He, Lixiang Zhang, Q Wang, Flow-induced instability of double-walled carbon nanotubes based on an elastic shell model, Journal of Applied Physics, 102: 044307, 2007.
[22] Wenquan Wang, Lixiang Zhang, Yan Yan, Yakun Guo, Study on turbulence features near an oscillating curved wall, Journal of Hydrodynamics, Ser. B, 19(3): 255-263, 2007.
[23] Wenquan Wang, Lixiang Zhang, Yan Yan, Yakun Guo, Large-eddy simulation of turbulent flow considering inflow wakes in a Francis turbine blade passage, Journal of Hydrodynamics, Ser. B, 19(2): 201-209, 2007.
Monograph
[1] Yan Yan, Wang Wenquan. Study on the dynamic characteristics of multi-walled carbon nanotubes conveying fluid, China Science Press, 2016.
Patent
[1] Wang Wenquan, Yan Yan, Zhang Lixiang, Zeng Yun, Li Ze, Yang Xijie, Yang Yang, Guo Tao. A method for predicting the dynamic characteristics of thin-walled structures based on staggered iterative coupling technique. 2015.11, China, ZL 6.8.
[2] Zeng Yun, Zhang Lixiang, Xu Tianmao, Wu Liang, Wang Wenquan, Yan Yan, Li Ze, Yao zhen. Dynamic monitoring method of water turbine internal energy loss, 2011.12, China, ZL 6.
[3] Zeng Yun, Zhang Lixiang, Li Ze, Yao Zhen, Wu Liang, Wang Wenquan, Yan Yan. A simulation method for low frequency oscillation signals of power. 2012.5, China, ZL 1.3.
[4] Wang Wenquan, Yan Yan. A computational method for flow field based on the consistent boundary condition for fluid solid interface, 2017, China, 4x.
[5] Wang Wenquan, Yan Yan. A new method of velocity correction for projection immersed boundary method, 2017, China, 4.
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