Associate Professors

 Xiaojing Liu

Name: Xiaojing Liu
Date of Birth:Jan. 1986
Nationality:China
Institution:College of Civil Engineering and Mechanics, Lanzhou University
Address:222 Tianshuinan Road, Lanzhou 730000, China
Tel:+86-931-8914560
Fax:
Email:liuxiaojing@lzu.edu.cn
Education
Sep. 2008—Jun. 2014 Ph.D. in Solid Mechanics College of Civil Engineering and Mechanics, Lanzhou University, China
Sep. 2004—Jun. 2008 B.E. in Engineering MechanicsCollege of Aerospace Engineering and Mechanics, Hunan University, China
Appointments
May 2017—Present Associate Professor
College of Civil Engineering and Mechanics, Lanzhou University, China
Oct. 2017—Oct. 2019 Post-doctor
College of Engineering and Applied Science, University of Cincinnati, USA
Jul. 2014—Apr. 2017 Lecturer
College of Aerospace Engineering and Mechanics, Hunan University, China
Research Areas
Wavelet-based numerical methods, Finite element analysis, Meshfree methods, Multiphysics problems, Computational fluid dynamics, Subcellular Structure mechanics
Visiting Positions
Members and Activities
Awards
Main Courses
Research Grants

2022.01-2025.12, A Wavelet Multiresolution Closed Method for Studying the Fracture Behavior of Bulk Superconductors with Strong Nonlinearity and Multi-Field Coupling Effects, National Natural Science Foundation of China, PI.

2020.11-2022.12, A Unified Method with High Accuracy for Simulating Turbulence, Sub-Project in National Key Project, Major Researcher.

2016.01-2018.12, A Time-Space Closed Decoupling Wavelet Method and Quantitative Research for Strongly Nonlinear Dynamics Behaviors of Beams/Plates, National Natural Science Foundation of China, PI.

2017.06-2020.06, Wavelet Meshfree Methods for Elastic Problems, Youth Science and Technology Talents Promotion Project of Gansu, PI.

2015.10-2017.12, A Space–Time Fully Decoupled Wavelet Precise Method for Studying Nonlinear Structural Dynamics, State Key Laboratory of Structural Analysis for Industrial Equipment, PI.

2015.01-2017.12, Nonlinear Mechanics in Interaction Between Complex Environment and Complex Medium, National Natural Science Foundation of China, Major Researcher

Refereed Publications

1.Xiaojing Liu, Guirong Liu, Jizeng Wang, Youhe Zhou, A wavelet multiresolution interpolation Galerkin method with effective treatments for discontinuity for crack growth analyses, Engineering Fracture Mechanics, 2020, 225: 106836.

2.Xiaojing Liu, Guirong Liu, Jizeng Wang, Youhe Zhou, A wavelet multi-resolution enabled interpolation Galerkin method for two-dimensional solids, Engineering Analysis with Boundary Elements, 2020, 117: 251–268.

3.Xiaojing Liu, Guirong Liu, Jizeng Wang, Youhe Zhou, A wavelet multiresolution interpolation Galerkin method for targeted local solution enrichment, Computational Mechanics, 2019, 64: 989–1016.

4.Xiaojing Liu, Jizeng Wang, Youhe Zhou, A space–time fully decoupled wavelet Galerkin method for solving a class of nonlinear wave problems, Nonlinear Dynamics, 2017, 90: 599-616.

5.Xiaojing Liu, Jizeng Wang, Youhe Zhou, A space–time fully decoupled wavelet Galerkin method for solving two-dimensional Burgers’ equations, Computers and Mathematics with Applications, 2016, 72: 2908–2919.

6.Xiaojing Liu, Jizeng Wang, Xiaomin Wang, Youhe Zhou, Exact solution of multi-term fractional diffusion-wave equations with Robin type boundary conditions, Applied Mathematics and Mechanics (English Edition), 2014, 35: 49-62.

7.Xiaojing Liu, Youhe Zhou, Lei Zhang, Jizeng Wang, Wavelet solutions of Burgers’ equation with high Reynolds numbers, Science China Technological Sciences, 2014, 57: 1285–1292.

8.Xiaojing Liu, Youhe Zhou, Xiaomin Wang, Jizeng Wang, A wavelet method for solving a class of nonlinear boundary value problems, Communications in Nonlinear Science and Numerical Simulation, 2013, 18: 1939-1948.

9.Xiaojing Liu, Youhe Zhou, Xiaojing Zheng, Jizeng Wang, Charging efficiency improvement by structuring lithium battery electrodes, Journal of Applied Physics, 2012, 111: 114303.

10.Xiaojing Liu, Youhe Zhou, Huajian Gao, Jizeng Wang, Anomalous flexural behaviors of microtubules, Biophysical Journal, 2012, 102: 1793-1803.