江苏大学门户 CHINESE
 
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Faculty & Staff >> Supervisors >> Ph.D Supervisors >> Content
Ph.D Supervisors
 
Jianfei Lu
NameJianfei Lu
Date of Birth1967.12 
Title ProfessorDegreePh.D
PositionProfessorDisciplineCivil Eenineering
Education and
Professional
Experience

Education:
1、Ph.D, Faculty of Construction Engineering and Mechanics,  Shanghai Jiao Tong University, 2000, China
2、Master degree, Graduate School of Jiangsu University, 1992, China
3、Bachelor degree, Civil Engineering Department of Shandong University of Science and Technology, 1989, China
Professional Experience

1、11/2009-11/ 2009  Visiting scholar of Dundee University
2、8/2007~   Professor, Department of Civil Engineering, Jiangsu University, China
3、8/2005- 11/2006 Research fellow, School of Civil Engineering, The University of Sydney, Australia
4、10/2004-7/2005 Associate Professor, Department of Civil Engineering, Jiangsu University, China
5、9/2002-9/2004 Post-doctoral Researcher, Institute of Earth Science, University of Bergen, Norway
6、12/2000-9/2002 Post-doctoral Researcher, Jiangsu University, China
7、9/1994-3/1997 Lecturer, Physics and Mathematics Institute, Jiangsu University, China

Social
Academic Post
and
Honor

1、Guest professor of East China JiaoTong University
2、Committee member of  the mechanics association of the youth of Jiangsu province
3、Member of Chinese mechanics association
4、Editorial board member of The Open Civil Engineering Journal
5、Reviewer of International Journal of Solids and Structures, Journal of Sound and Vibration, Soil Dynamics and Earthquake Engineering, Engineering Fracture Mechanics, Advances in Water Resources, Journal of Multi-Body Dynamics etc
6、The first prize of Nature Science from Education Ministry of China (2014)
7、The second prize of Nature Science from Jiangxi Province (2018)

Main Courses

1、Elasticity and Fem for undergraduate students
2、Advanced continuum mechanics for PHD students
3、Soil dynamics for master degree students
4、Soil mechanics and foundation for undergraduate students
5、Engineering mechanics for undergraduate students
6、Mechanics of material for undergraduate students

Scientific
Research Field

1、Soil dynamics
2、Mechanics of porous media
3、Wave filed simulation for inhomogeneous media
4、Phase field theory and its application
5、Phononic crystal theory and its application
6、Mechanics of soft matter

Projects

1、Constitutive relations for freeezing porous media on the basis of the phase field theory. Funding from Chinese Natural Science Fund Council, 2013-2016 (No. 11272137).
2、Vibration isolation theory in civil engineering and phase filed theory in freezing saturated soils. Internal funding of Jiangsu University for outstanding youth scholars, 2008.1-2012.12.
3、Phase field theory for freezing porous media and its application. Open funding from State Key Laboratory for GeoMechanics and Deep Underground Engineering of China, 2009.1-2011.12 (No. SKLGDUE08012X).
4、The phononic crystal model for the periodic viaduct structure when considering its coupling with the half-space soil. Funding from Chinese Natural Science Fund Council, 2011.1-2013.12 (No. 51078171).
5、Settlement research of piles group when taking into account the coupling between piles and soil. Project from Educarion Ministry of P.R. China, 1999-2001 (No.98024832).
6、Interaction between cracks, inclusions and waves of solid mateials. Funding for advanced intellectuals of Jiangsu University, 2000-2002.  
7、Interaction between piles and saturated soil. Post-doctoral project from Chinese Post-Doctoral Council, 2001-2002 (No. 2001529).
8、Crack problems in complex materials. Funding from Chinese Natural Science Fund Council, 2003-2005 (No. 10272053).
9、Mathematical Modeling of Seismic Wave Attenuation Based on Physical Models of Mechanical Rock Behavior. Project from Norwegian Research Council, 2002-2004 (No. 149238/431).
10、Boudnary element method and integral equation method for moving loads problems in saturated soils. Funding from Chinese Natural Science Fund Council, 2006-2008 (No.50578071).
11、Investigation of some dynamic problems for the saturated soil. Project from Chinese Education Ministry, 2006-2008.

Main Papers
and Patents

1、Lu J-F, Ding J-J, Fan Z, Li MH. Response of a circular tunnel embedded in the saturated soil to a series of equidistant moving loads. Acta Mechanica, 2017, 228: 3675–3693 (SCI).
2、Sha X, Lu J-F(通讯作者), Lan T, Jeng D-S. Dynamic response of a defected periodic viaduct to a moving point load. International Journal of Structural Stability and Dynamics, 2017 ,17, 1750078 (SCI).
3、Lu J-F, Sha X, Wu J-B. Resonance and cancellation phenomena caused by equidistant moving loadings in a periodic structure — a pile-supported periodic viaduct. European Journal of Mechanics A-Solids, 2016, 59: 114-123(SCI).
4、Lu J-F, Liu Y-Q,Shi M-Q. Reflection-transmission matrix model for the axisymmetric deformation of a layered transversely isotropic saturated soil. Acta Mechanica, 2016, 227: 2181-2205(SCI).
5、Sha X, Lu J-F(通讯作者), Zhang R. Resonance and cancelation phenomena in a periodic viaduct under a series of equidistant moving loadings. Archive of Applied Mechanics, 2016, 86: 1431-1447(SCI).
6、Lu J-F, Shen R-F, Shi M-Q. Reflection–transmission matrix method for the consolidation of a multilayered saturated soil. Journal for Numerical and Analytical Methods in Geomechanics 2016, 40: 1594-1622 (SCI).
7、Lu J-F, Mei H, Zhong L. Dynamic response of a periodic viaduct to a moving loading with consideration of pile-soil-structure interaction. Acta Mechanica, 2015, 225: 2013-2034 (SCI).
8、Lu J-F, Zhong L. Dynamic response of a periodic viaduct to a moving point loading. Archive of Applied Mechanics, 2015, 85: 149-169 (SCI).
9、Zhang R, Fu Q-X, Lu J-F (通讯作者). Analysis of the wave 1ocalization in a disordered periodic bridge with pile-soil-water-structure coupling. International Journal of Structural Stability and Dynamics, 2015, 15, 1450045 (SCI).
10、Lu J-F,  Lei L. A model for the dynamic response of a defected periodic bridge with PSWS coupling. Ocean Engineering, 2014, 84: 89-97(SCI).
11、Lu J-F, Yuan H-Y. Free vibration analysis of a periodic viaduct supported by pile foundations. Journal of Bridge Engineering 2014, 0414049 (SCI).
12、Lu J-F, He C-Y. A model for the seismic analysis of a periodic viaduct when considering the pile–soil–structure interaction. Soil Dynamics and Earthquake Engineering, 2014, 56: 13–27 (SCI).
13、Lu J-F, Zhang X, Zhang R. A wavenumber domain boundary element model for the vibration isolation via a new type of pile structure: linked pile rows. Archive of Applied Mechanics,  2014,  84:401–420 (SCI).
14、Lu JF, Jeng DS, Wan JW, Zhang JS. A new model for the vibration isolation via pile rows consisting of infinite number of piles. International Journal for Numerical and Analytical Methods in Geomechanics 2013; 37:2394–2426 (SCI).
15、Lu JF, Yuan HY. The sequence Fourier transform method for the analysis of a periodic viaduct subjected to non-uniform seismic waves. Acta Mechanica, 2013, 224, 2143-2168 (SCI).
16、Zhang X, Lu JF (通讯作者). A wavenumber domain boundary element method model for the simulation of vibration isolation by periodic pile rows. Engineering Analysis with Boundary Elements 2013, 37: 1059–1073 (SCI).
17、Fu QX, Zhong L, Lu JF (通讯作者). Wave localization in a disordered periodic viaduct undergoing out-of-plane vibration. Archive of Applied Mechanics 2013, 83: 1039-1059 (SCI).
18、Fu QX, Lu JF (通讯作者). A Model for the wave localization in a disordered periodic elevated railway undergoing in-plane vibration. Journal of Vibration and Acoustics 2013, 135(5), 051027 (SCI).
19、Lu JF, Li JH, Jeng DS. A model for the energy bands of an "open"-type periodic structure: a periodic viaduct coupled with the half-space. Acta Mechanica, 2012, 223: 257-277 (SCI).
20、Lu JF, Zhang X, Wan JW, Jeng DS. The influence of a fixed axial top load on the dynamic response of a single pile. Computers & Geotechnics, 2012, 39: 54-65 (SCI).
21、Lu JF, Jeng DS. Energy bands of a periodic viaduct in out-of-plane vibration: Coupling with a half-space. European Journal of Mechanics A-Solids, 2012, 31: 21-36 (SCI).
22、Lu JF, Jeng DS. Energy bands of a periodic viaduct in out-of-plane vibration: Coupling with a half-space. European Journal of Mechanics - A/Solids, 2011, 31: 21-36 (SCI).
23、Lu JF, Tan YP, Wang JH. A phase field model for the freezing saturated porous medium. International Journal ofEngineering Science, 2011, 49: 768-780 (SCI).
24、Lu JF, Jeng DS. Dynamic response of an offshore pile to pseudo-Stoneley waves along the interface between a poroelastic seabed and seawater. Soil Dynamics and Earthquake Engineering, 2010, 30: 184-201 (SCI).
25、Lu JF, Xu B, Wang JH. A numerical model for the isolation of moving-load induced vibrations by pile rows embedded in layered porous media. International Journal of Solids and Structures, 2009, 46: 3771-3781 (SCI).
26、Lu JF, Xu B, Wang JH et al. Dynamic responses of a pile embedded in a multilayered saturated porous medium to a harmonic axial loading. Acta Mechanica, 2009, 207: 29-49 (SCI).
27、Lu JF, Xu B, Wang JH. Numerical analysis of isolation of the vibration due to moving loads using pile rows embedded in a poroelastic half space. Journal of Sound and Vibration, 2009, 319: 940-962 (SCI).
28、Lu JF & Jeng D-S. Poro-elastic model for pile-porous medium interaction due to seismic waves. International Journal for Numerical and Analytical Methods in Geomechanics, 2008, 32: 1-41 (SCI).
29、Lu JF, Jeng DS & Williams SJ. A 2.5-D dynamic model for a saturated porous medium: Part I. Green’s function. International Journal of Solids and Structures, 2008, 45: 378-391(SCI).
30、Lu JF, Jeng DS & Williams SJ. A 2.5-D dynamic model for a saturated porous medium: Part II. Boundary element method. International Journal of Solids and Structures, 2008, 45: 359-377 (SCI).
31、Lu JF & Jeng DS. Green’s function for an acoustic source within a half-space seawater overlying a porous seabed. Journal of Sound and Vibration, 2007, 307: 172–186 (SCI).
32、Lu JF, Jeng DS & Lee TL. Dynamic response of a circular tunnel with a piecewise lining and embedded in a poroelastic medium. Soil Dynamics and Earthquake Engineering, 2007, 27: 875-891 (SCI).
33、Lu JF, Hanyga A & Jeng DS. A mixture-theory-based dynamic model for a porous medium saturated by two immiscible fluids. Journal of Applied Geophysics, 2007, 62: 89-106 (SCI).  
34、Lu JF, Hanyga A & Jeng DS. A linear dynamic model for a saturated porous medium. Transport in Porous Media, 2007, 68: 321-340 (SCI).
35、Lu, JF & Jeng DS. A half-space saturated poroelastic medium subject to a moving point load. International Journal of Solid and Structures, 2007, 44: 573–586 (SCI).
36、Lu JF & Jeng DS. Dynamic analysis of an infinite cylindrical hole in a saturated poroelastic medium. Archive of Applied Mechanics, 2006, 76: 253–276 (SCI).
37、Lu JF & Jeng DS. Dynamic analysis of a circular tunnel embedded in a saturated poroelastic medium and subject to moving loads. Journal of Vibration and Acoustics, ASME, 2006, 128: 750–756 (SCI).
38、Lu JF, Jeng DS & Nie WD. Dynamic response of a pile embedded in a porous medium and subjected to plane SH waves. Computers and Geotechnics, 2006, 33(8), 404–418 (SCI).
39、Lu JF & Hanyga A. Linear dynamic model for porous media saturated by two immiscible fluids. International Journal of Solids and Structures, 2005, 42: 2689–2709 (SCI).
40、Lu JF & Hanyga A. Wave field simulation for heterogeneous porous media with singular memory drag force. Journal of Computational Physics, 2005, 208: 651–74 (SCI).
41、Lu JF & Hanyga A. Fundamental solution for a layered porous half space subject to a vertical point force or a point fluid source. Computational Mechanics, 2005, 35: 376–391 (SCI).
42、Lu JF & Hanyga A. Scattering of antiplane shear wave by a kinked crack. Engineering Fracture Mechanics, 2004, 71: 1289–1305 (SCI).
43、Lu JF & Hanyga A. Scattering of SH wave by a crack terminating at the interface of a odelingal. Computational Mechanics, 2004, 34: 74–85 (SCI).
44、Lu JF & Hanyga A. Dynamic interaction between multiple cracks and a circular hole swept by SH-waves. International Journal of Solids and Structures, 2004, 41: 6725–6744 (SCI).
45、Lu JF & Hanyga A. Numerical modeling method for wave propagation in a linear viscoelastic medium with singular memory. Geophysical Journal International, 2004, 159: 688–702 (SCI).       

Email

ljfdoctor@yahoo.com

 
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