| A direct O (N log2 N) finite difference method for fractional diffusion equations H Wang, K Wang, T Sircar Journal of Computational Physics 229 (21), 8095-8104, 2010 | 387 | 2010 |
| A summary of numerical methods for time-dependent advection-dominated partial differential equations RE Ewing, H Wang Journal of Computational and Applied Mathematics 128 (1-2), 423-445, 2001 | 282 | 2001 |
| A fast finite difference method for two-dimensional space-fractional diffusion equations H Wang, TS Basu SIAM Journal on Scientific Computing 34 (5), A2444-A2458, 2012 | 251 | 2012 |
| A fast characteristic finite difference method for fractional advection–diffusion equations K Wang, H Wang Advances in water resources 34 (7), 810-816, 2011 | 191 | 2011 |
| An ELLAM scheme for advection-diffusion equations in two dimensions H Wang, HK Dahle, RE Ewing, MS Espedal, RC Sharpley, S Man SIAM Journal on Scientific Computing 20 (6), 2160-2194, 1999 | 156 | 1999 |
| An O (N log2N) alternating-direction finite difference method for two-dimensional fractional diffusion equations H Wang, K Wang Journal of Computational Physics 230 (21), 7830-7839, 2011 | 144 | 2011 |
| Time-fractional Allen–Cahn and Cahn–Hilliard phase-field models and their numerical investigation H Liu, A Cheng, H Wang, J Zhao Computers & Mathematics with Applications 76 (8), 1876-1892, 2018 | 141 | 2018 |
| Fast alternating-direction finite difference methods for three-dimensional space-fractional diffusion equations H Wang, N Du Journal of Computational Physics 258, 305-318, 2014 | 139 | 2014 |
| Wellposedness and regularity of the variable-order time-fractional diffusion equations H Wang, X Zheng Journal of Mathematical Analysis and Applications 475 (2), 1778-1802, 2019 | 138 | 2019 |
| Wellposedness of variable-coefficient conservative fractional elliptic differential equations H Wang, D Yang SIAM Journal on Numerical Analysis 51 (2), 1088-1107, 2013 | 138 | 2013 |
| Eulerian-Lagrangian localized adjoint methods for convection-diffusion equations and their convergence analysis H Wang, RE Ewing, TF Russell IMA journal of numerical analysis 15 (3), 405-459, 1995 | 127 | 1995 |
| An approximation to miscible fluid flows in porous media with point sources and sinks by an Eulerian--Lagrangian localized adjoint method and mixed finite element methods H Wang, D Liang, RE Ewing, SL Lyons, G Qin SIAM Journal on Scientific Computing 22 (2), 561-581, 2000 | 118 | 2000 |
| A family of Eulerian–Lagrangian localized adjoint methods for multi-dimensional advection-reaction equations H Wang, RE Ewing, G Qin, SL Lyons, M Al-Lawatia, S Man Journal of Computational Physics 152 (1), 120-163, 1999 | 113 | 1999 |
| Optimal-order error estimates of finite element approximations to variable-order time-fractional diffusion equations without regularity assumptions of the true solutions X Zheng, H Wang IMA Journal of Numerical Analysis 41 (2), 1522-1545, 2021 | 109 | 2021 |
| A superfast-preconditioned iterative method for steady-state space-fractional diffusion equations H Wang, N Du Journal of Computational Physics 240, 49-57, 2013 | 105 | 2013 |
| A fast Galerkin method with efficient matrix assembly and storage for a peridynamic model H Wang, H Tian Journal of Computational Physics 231 (23), 7730-7738, 2012 | 104 | 2012 |
| A variable-order fractional differential equation model of shape memory polymers Z Li, H Wang, R Xiao, S Yang Chaos, Solitons & Fractals 102, 473-485, 2017 | 87 | 2017 |
| Inhomogeneous Dirichlet boundary-value problems of space-fractional diffusion equations and their finite element approximations H Wang, D Yang, S Zhu SIAM Journal on Numerical Analysis 52 (3), 1292-1310, 2014 | 87 | 2014 |
| A two-grid MMOC finite element method for nonlinear variable-order time-fractional mobile/immobile advection–diffusion equations C Chen, H Liu, X Zheng, H Wang Computers & Mathematics with Applications 79 (9), 2771-2783, 2020 | 83 | 2020 |
| An error estimate of a numerical approximation to a hidden-memory variable-order space-time fractional diffusion equation X Zheng, H Wang SIAM Journal on Numerical Analysis 58 (5), 2492-2514, 2020 | 81 | 2020 |