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Wenbin Chen 0006
Person information
- affiliation: Fudan University, Shanghai Key Laboratory for Contemporary Applied Mathematics, School of Mathematical Sciences, Shanghai, China
Other persons with the same name
- Wenbin Chen (aka: Wen-Bin Chen) — disambiguation page
- Wenbin Chen 0001 — West Virginia University, Morgantown, Department of Computer Science and Electrical Engineering
- Wenbin Chen 0002 — Nanjing University of Aeronautics and Astronautics, Department of Computer Science
- Wenbin Chen 0003
— Guangzhou University, School of Computer Science, China (and 1 more)
- Wenbin Chen 0004
— North University of China, Shanxi Provincial Key Laboratory for Biomedical Imaging and Big Data, Taiyuan, China
- Wenbin Chen 0005
(aka: Wen-Bin Chen 0005) — Huazhong University of Science and Technology, Wuhan, China
- Wenbin Chen 0007
— Harbin Institute of Technology, Research Center for Space Optical Engineering, China
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2020 – today
- 2025
- [j54]Qing Cheng
, Qianqian Liu, Wenbin Chen, Jie Shen:
A new flow dynamic approach for Wasserstein gradient flows. J. Comput. Phys. 524: 113696 (2025) - [j53]Hengli Yang, Weichen Cao, Wenbin Chen
:
Energy Stability of Adaptive Exponential Time Difference Runge-Kutta Method (ETDRK32). J. Sci. Comput. 103(1): 28 (2025) - [j52]Nian Shao
, Wenbin Chen:
Riemannian acceleration with preconditioning for symmetric eigenvalue problems. Numerische Mathematik 157(1): 307-354 (2025) - [j51]Nian Shao
, Wenbin Chen
, Zhaojun Bai:
EPIC: A Provable Accelerated Eigensolver Based on Preconditioning and Implicit Convexity. SIAM J. Matrix Anal. Appl. 46(1): 45-73 (2025) - 2024
- [j50]Wenbin Chen, Jianyu Jing, Qianqian Liu, Cheng Wang, Xiaoming Wang
:
Convergence analysis of a second order numerical scheme for the Flory-Huggins-Cahn-Hilliard-Navier-Stokes system. J. Comput. Appl. Math. 450: 115981 (2024) - [j49]Weichen Cao, Hengli Yang, Wenbin Chen
:
An Exponential Time Differencing Runge-Kutta Method ETDRK32 for Phase Field Models. J. Sci. Comput. 99(1): 6 (2024) - [j48]Shuxun Shi, Xinyi Du, Wenbin Chen
:
A BDF-Spectral Method for a Class of Nonlocal Partial Differential Equations with Long Time Delay. SIAM J. Sci. Comput. 46(6): 3503- (2024) - [i15]Nian Shao, Wenbin Chen, Zhaojun Bai:
EPIC: a provable accelerated Eigensolver based on Preconditioning and Implicit Convexity. CoRR abs/2401.11786 (2024) - [i14]Wenbin Chen, Jianyu Jing, Qianqian Liu, Cheng Wang, Xiaoming Wang:
Convergence analysis of a second order numerical scheme for the Flory-Huggins-Cahn-Hilliard-Navier-Stokes system. CoRR abs/2405.02616 (2024) - [i13]Qing Cheng, Qianqian Liu, Wenbin Chen, Jie Shen:
A new flow dynamic approach for Wasserstein gradient flows. CoRR abs/2406.14870 (2024) - 2023
- [j47]Qianqian Liu, Chenghua Duan, Wenbin Chen
:
EnVarA-FEM for the flux-limited porous medium equation. J. Comput. Phys. 493: 112432 (2023) - [j46]Qianqian Liu, Jianyu Jing, Maoqin Yuan, Wenbin Chen
:
A Positivity-Preserving, Energy Stable BDF2 Scheme with Variable Steps for the Cahn-Hilliard Equation with Logarithmic Potential. J. Sci. Comput. 95(2): 37 (2023) - [j45]Shuxun Shi, Wenbin Chen
:
Convergence and Asymptotic Stability of the BDF Schemes for the Nonlocal Partial Differential Equations with Delay. J. Sci. Comput. 95(3): 88 (2023) - [j44]Wenbin Chen, Jianyu Jing, Hao Wu
:
A Uniquely Solvable, Positivity-Preserving and Unconditionally Energy Stable Numerical Scheme for the Functionalized Cahn-Hilliard Equation with Logarithmic Potential. J. Sci. Comput. 96(3): 75 (2023) - [j43]Wenbin Chen, Nian Shao
, Xuejun Xu:
A locally optimal preconditioned Newton-Schur method for symmetric elliptic eigenvalue problems. Math. Comput. 92(344): 2655-2684 (2023) - [j42]Nian Shao
, Wenbin Chen
:
Convergence Analysis of Newton-Schur Method for Symmetric Elliptic Eigenvalue Problem. SIAM J. Numer. Anal. 61(1): 315-342 (2023) - [i12]Nian Shao, Wenbin Chen:
Riemannian Acceleration with Preconditioning for symmetric eigenvalue problems. CoRR abs/2309.05143 (2023) - 2022
- [j41]Shufen Wang, Simin Zhou, Shuxun Shi, Wenbin Chen
:
Fully decoupled and energy stable BDF schemes for a class of Keller-Segel equations. J. Comput. Phys. 449: 110799 (2022) - [j40]Wenbin Chen
, Jianyu Jing, Cheng Wang
, Xiaoming Wang
:
A Positivity Preserving, Energy Stable Finite Difference Scheme for the Flory-Huggins-Cahn-Hilliard-Navier-Stokes System. J. Sci. Comput. 92(2): 31 (2022) - [i11]Yi Liu, Wenbin Chen, Yanqiu Wang:
A Weak Galerkin Mixed Finite Element Method for second order elliptic equations on 2D Curved Domains. CoRR abs/2204.01067 (2022) - [i10]Nian Shao, Wenbin Chen:
Convergence analysis of the Newton-Schur method for the symmetric elliptic eigenvalue problem. CoRR abs/2205.01861 (2022) - [i9]Wenbin Chen, Jianyu Jing, Hao Wu:
A Uniquely Solvable, Positivity-Preserving and Unconditionally Energy Stable Numerical Scheme for the Functionalized Cahn-Hilliard Equation with Logarithmic Potential. CoRR abs/2210.08501 (2022) - [i8]Wenbin Chen, Qianqian Liu, Jie Shen:
Error estimates and blow-up analysis of a finite-element approximation for the parabolic-elliptic Keller-Segel system. CoRR abs/2212.07655 (2022) - 2021
- [j39]Maoqin Yuan, Wenbin Chen
, Cheng Wang, Steven M. Wise
, Zhengru Zhang:
An Energy Stable Finite Element Scheme for the Three-Component Cahn-Hilliard-Type Model for Macromolecular Microsphere Composite Hydrogels. J. Sci. Comput. 87(3): 78 (2021) - [j38]Chenghua Duan, Wenbin Chen
, Chun Liu, Xingye Yue
, Shenggao Zhou
:
Structure-Preserving Numerical Methods for Nonlinear Fokker-Planck Equations with Nonlocal Interactions by an Energetic Variational Approach. SIAM J. Sci. Comput. 43(1): B82-B107 (2021) - [i7]Wenbin Chen, Shufen Wang, Xiaoming Wang:
Energy stable arbitrary order ETD-MS method for gradient flows with Lipschitz nonlinearity. CoRR abs/2102.10988 (2021) - [i6]Maoqin Yuan, Wenbin Chen, Cheng Wang, Steven M. Wise, Zhengru Zhang:
An energy stable finite element scheme for the three-component Cahn-Hilliard-type model for macromolecular microsphere composite hydrogels. CoRR abs/2104.09042 (2021) - [i5]Wenbin Chen, Daozhi Han, Cheng Wang, Shufen Wang, Xiaoming Wang, Yichao Zhang:
Error estimate of a decoupled numerical scheme for the Cahn-Hilliard-Stokes-Darcy system. CoRR abs/2106.03260 (2021) - 2020
- [j37]Wei Xu
, Ziping Huang, Weimin Han, Wenbin Chen
, Cheng Wang
:
Numerical approximation of an electro-elastic frictional contact problem modeled by hemivariational inequality. Comput. Appl. Math. 39(4) (2020) - [j36]Shufen Wang, Wenbin Chen
, Hanshuang Pan, Cheng Wang
:
Optimal rate convergence analysis of a second order scheme for a thin film model with slope selection. J. Comput. Appl. Math. 377: 112855 (2020) - [j35]Wenbin Chen
, Cheng Wang
, Shufen Wang, Xiaoming Wang
, Steven M. Wise
:
Energy Stable Numerical Schemes for Ternary Cahn-Hilliard System. J. Sci. Comput. 84(2): 27 (2020) - [j34]Wenbin Chen
, Daozhi Han
, Xiaoming Wang
, Yichao Zhang:
Uniquely Solvable and Energy Stable Decoupled Numerical Schemes for the Cahn-Hilliard-Navier-Stokes-Darcy-Boussinesq System. J. Sci. Comput. 85(2): 45 (2020) - [j33]Wenbin Chen
, Yanqiu Wang:
\(H^1\) , \(H(\mathrm {curl})\) and \(H(\mathrm {div})\) conforming elements on polygon-based prisms and cones. Numerische Mathematik 145(4): 973-1004 (2020) - [j32]Hanshuang Pan, Nian Shao, Yue Yan, Xinyue Luo, Shufen Wang, Ling Ye, Jin Cheng, Wenbin Chen
:
Multi-chain Fudan-CCDC model for COVID-19 - a revisit to Singapore's case. Quant. Biol. 8(4): 325-335 (2020) - [i4]Shufen Wang, Wei Xu, Weimin Han, Wenbin Chen:
Numerical Analysis of History-dependent Variational-hemivariational Inequalities. CoRR abs/2004.01836 (2020) - [i3]Chenghua Duan, Wenbin Chen, Chun Liu, Cheng Wang, Xingye Yue:
A second order accurate numerical scheme for the porous medium equation by an energetic variational approach. CoRR abs/2006.12354 (2020) - [i2]Chenghua Duan, Wenbin Chen, Chun Liu, Xingye Yue, Shenggao Zhou:
Structure-Preserving Numerical Methods for Nonlinear Fokker-Planck Equations with Nonlocal Interactions by an Energetic Variational Approach. CoRR abs/2008.06903 (2020)
2010 – 2019
- 2019
- [j31]Wei Xu
, Ziping Huang, Weimin Han
, Wenbin Chen
, Cheng Wang
:
Numerical analysis of history-dependent hemivariational inequalities and applications to viscoelastic contact problems with normal penetration. Comput. Math. Appl. 77(10): 2596-2607 (2019) - [j30]Wei Xu
, Ziping Huang, Weimin Han, Wenbin Chen
, Cheng Wang
:
Numerical analysis of history-dependent variational-hemivariational inequalities with applications in contact mechanics. J. Comput. Appl. Math. 351: 364-377 (2019) - [j29]Wenbin Chen, Cheng Wang
, Xiaoming Wang
, Steven M. Wise
:
Positivity-preserving, energy stable numerical schemes for the Cahn-Hilliard equation with logarithmic potential. J. Comput. Phys. X 3: 100031 (2019) - [j28]Wenbin Chen
, Yichao Zhang, Weijia Li, Yanqiu Wang
, Yue Yan:
Optimal Convergence Analysis of a Second Order Scheme for a Thin Film Model Without Slope Selection. J. Sci. Comput. 80(3): 1716-1730 (2019) - [j27]Wenbin Chen
, Xiaoming Wang
, Yue Yan, Zhuying Zhang:
A Second Order BDF Numerical Scheme with Variable Steps for the Cahn-Hilliard Equation. SIAM J. Numer. Anal. 57(1): 495-525 (2019) - [i1]Wenbin Chen, Weijia Li, Zhiwen Luo, Cheng Wang, Xiaoming Wang
:
A stabilized second order exponential time differencing multistep method for thin film growth model without slope selection. CoRR abs/1907.02234 (2019) - 2018
- [j26]Yinzhong Qian, Wenbin Chen
, I-Fan Shen:
Action recognition from mutually incoherent pose bases in static image. IET Comput. Vis. 12(3): 233-240 (2018) - [j25]Weijia Li, Wenbin Chen
, Cheng Wang, Yue Yan
, Ruijian He:
A Second Order Energy Stable Linear Scheme for a Thin Film Model Without Slope Selection. J. Sci. Comput. 76(3): 1905-1937 (2018) - 2017
- [j24]Wenbin Chen
, Yanqiu Wang
:
Minimal degree H(curl) and H(div) conforming finite elements on polytopal meshes. Math. Comput. 86(307): 2053-2087 (2017) - [j23]Yuan Liu, Wenbin Chen
, Cheng Wang, Steven M. Wise
:
Error analysis of a mixed finite element method for a Cahn-Hilliard-Hele-Shaw system. Numerische Mathematik 135(3): 679-709 (2017) - [j22]Wenbin Chen
, Daozhi Han, Xiaoming Wang
:
Uniquely solvable and energy stable decoupled numerical schemes for the Cahn-Hilliard-Stokes-Darcy system for two-phase flows in karstic geometry. Numerische Mathematik 137(1): 229-255 (2017) - [j21]Wenbin Chen
, Chang Liu, Zhiqiang Wang:
Global Feedback Stabilization for a Class of Nonlocal Transport Equations: The Continuous and Discrete Case. SIAM J. Control. Optim. 55(2): 760-784 (2017) - 2016
- [j20]Yinzhong Qian, Wenbin Chen
, I-Fan Shen:
Action Recognition from Pose Signature in Static Image. Int. J. Pattern Recognit. Artif. Intell. 30(3): 1655010:1-1655010:22 (2016) - [j19]Wenbin Chen
, Yuan Liu, Cheng Wang, Steven M. Wise
:
Convergence analysis of a fully discrete finite difference scheme for the Cahn-Hilliard-Hele-Shaw equation. Math. Comput. 85(301): 2231-2257 (2016) - [j18]Wenbin Chen
, Max D. Gunzburger, Dong Sun, Xiaoming Wang
:
An efficient and long-time accurate third-order algorithm for the Stokes-Darcy system. Numerische Mathematik 134(4): 857-879 (2016) - [c15]Yinzhong Qian, Wenbin Chen
, I-Fan Shen:
Mutually incoherent pose bases for Action recognition. ICPR 2016: 823-828 - 2015
- [j17]Wenbin Chen
, Matthew C. Schmidt, Wenhong Tian, Nagiza F. Samatova, Shaohong Zhang:
An efficient algorithm for pairwise local alignment of protein interaction networks. J. Bioinform. Comput. Biol. 13(2): 1550003:1-1550003:14 (2015) - [j16]Lingdi Wang, Wenbin Chen
, Cheng Wang:
An energy-conserving second order numerical scheme for nonlinear hyperbolic equation with an exponential nonlinear term. J. Comput. Appl. Math. 280: 347-366 (2015) - [j15]Wenbin Chen
, Lingxi Peng, Jianxiong Wang, Fufang Li, Maobin Tang, Wei Xiong, Songtao Wang:
An improved lower bound for approximating the Minimum Integral Solution Problem with Preprocessing over ℓ∞ norm. J. Comb. Optim. 30(3): 447-455 (2015) - 2014
- [j14]Wenbin Chen
, Yanqiu Wang
:
A posteriori error estimate for the H(div) conforming mixed finite element for the coupled Darcy-Stokes system. J. Comput. Appl. Math. 255: 502-516 (2014) - [j13]Wenbin Chen
, Cheng Wang, Xiaoming Wang
, Steven M. Wise
:
A Linear Iteration Algorithm for a Second-Order Energy Stable Scheme for a Thin Film Model Without Slope Selection. J. Sci. Comput. 59(3): 574-601 (2014) - [j12]Wenbin Chen
, Zhengzhang Chen
, Nagiza F. Samatova, Lingxi Peng, Jianxiong Wang, Maobin Tang:
Solving the maximum duo-preservation string mapping problem with linear programming. Theor. Comput. Sci. 530: 1-11 (2014) - 2013
- [j11]Xinming Wu, Wenbin Chen
:
Error Estimates of the Finite Element Method for Interior Transmission Problems. J. Sci. Comput. 57(2): 331-348 (2013) - [j10]Wenbin Chen
, Max D. Gunzburger, Dong Sun, Xiaoming Wang
:
Efficient and Long-Time Accurate Second-Order Methods for the Stokes-Darcy System. SIAM J. Numer. Anal. 51(5): 2563-2584 (2013) - 2012
- [j9]Wenbin Chen
, Sidafa Conde, Cheng Wang, Xiaoming Wang
, Steven M. Wise
:
A Linear Energy Stable Scheme for a Thin Film Model Without Slope Selection. J. Sci. Comput. 52(3): 546-562 (2012) - [j8]Wenbin Chen
, Yanqiu Wang
:
A mixed finite element method for thin film epitaxy. Numerische Mathematik 122(4): 771-793 (2012) - 2011
- [j7]Wenbin Chen
, Max D. Gunzburger, Fei Hua, Xiaoming Wang
:
A Parallel Robin-Robin Domain Decomposition Method for the Stokes-Darcy System. SIAM J. Numer. Anal. 49(3): 1064-1084 (2011) - 2010
- [j6]Xiaoyi Hu, Xiang Xu
, Wenbin Chen
:
Numerical method for the inverse heat transfer problem in composite materials with Stefan-Boltzmann conditions. Adv. Comput. Math. 33(4): 471-489 (2010) - [j5]Wenbin Chen
, Xingjie Li, Dong Liang:
Energy-Conserved Splitting Finite-Difference Time-Domain Methods for Maxwell's Equations in Three Dimensions. SIAM J. Numer. Anal. 48(4): 1530-1554 (2010) - [c14]Xingyong Lv, Wenbin Chen, I-Fan Shen:
Real-Time Dehazing for Image and Video. PG (Poster Papers) 2010: 62-69
2000 – 2009
- 2009
- [c13]Liming Wang, Yuan Peng, Wenbin Chen
, Yifan Shen:
Finding Stuff on the Street. ICIG 2009: 802-807 - 2008
- [j4]Wenbin Chen
, Xingjie Li, Dong Liang:
Energy-conserved splitting FDTD methods for Maxwell's equations. Numerische Mathematik 108(3): 445-485 (2008) - 2007
- [c12]Chunjian Ren, Wenbin Chen, I-Fan Shen:
Three-Stage Motion Deblurring from a Video. ACCV (2) 2007: 53-62 - [c11]Qiyong Guo, Hongyu Li, Wenbin Chen
, I-Fan Shen, Jussi Parkkinen:
Manifold clustering via energy minimization. ICMLA 2007: 375-380 - [c10]Rong Hu, Rongjie Shi, I-Fan Shen, Wenbin Chen:
Video Stabilization Using Scale-Invariant Features. IV 2007: 871-877 - 2006
- [j3]Hongyu Li, Wenbin Chen
, I-Fan Shen:
Segmentation of Discrete Vector Fields. IEEE Trans. Vis. Comput. Graph. 12(3): 289-300 (2006) - [c9]Hongyu Li, Rongjie Shi, Wenbin Chen, I-Fan Shen:
Image Tangent Space for Image Retrieval. ICPR (2) 2006: 1126-1130 - 2005
- [j2]Wenbin Chen, Yifan Shen, Qing Xia:
A mortar finite element approximation for the linear Poisson-Boltzmann equation. Appl. Math. Comput. 164(1): 11-23 (2005) - [c8]Rongjie Shi, I-Fan Shen, Wenbin Chen:
Image Denoising through Locally Linear Embedding. CGIV 2005: 147-152 - [c7]Jun Yue, Wanjun Jin, Wenbin Chen, I-Fan Shen:
Efficient Texture Mapping Using Minimum Cut. CIT 2005: 560-564 - [c6]Rongjie Shi, I-Fan Shen, Wenbin Chen, Su Yang:
Manifold Learning for Image Denoising. CIT 2005: 596-602 - [c5]Li Teng, Hongyu Li, Xuping Fu, Wenbin Chen, I-Fan Shen:
Dimension reduction of microarray data based on local tangent space alignment. IEEE ICCI 2005: 154-159 - [c4]Hongyu Li, Wenbin Chen, I-Fan Shen:
Supervised Learning for Classification. FSKD (2) 2005: 49-57 - [c3]Hongyu Li, Wenbin Chen, I-Fan Shen:
Supervised Local Tangent Space Alignment for Classification. IJCAI 2005: 1620-1621 - [c2]Hongyu Li, Li Teng, Wenbin Chen
, I-Fan Shen:
Supervised Learning on Local Tangent Space. ISNN (1) 2005: 546-551 - 2004
- [c1]Hongyu Li, Li Teng, Wenbin Chen, I-Fan Shen:
Eddy tracking of unsteady flow field. ICIG 2004: 72-75 - 2002
- [j1]Xuejun Xu, Likang Li, Wenbin Chen:
A Multigrid Method for the Mortar-Type Morley Element Approximation of a Plate Bending Problem. SIAM J. Numer. Anal. 39(5): 1712-1731 (2002)
Coauthor Index

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last updated on 2025-05-26 23:09 CEST by the dblp team
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