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Weihua Deng

2024-09-19 15:39:00
Weihua Deng
Weihua Deng
Phd 、Professor
Tel:
+86-931-8912493
Fax:
+86-931-8912481
E-Mail:
dengwh @lzu.edu.cn
Mailing Address:
Room 609, Science and Engineering Building, West District of Chengguan Campus, 222 South Tianshui Road, School of Mathematics and Statistics, Lanzhou University, Lanzhou 730000, P.R. China

· Honors And Awards

2024                     State Council Government Special Allowance

2023                     Top notch Leading Talents in Gansu Province

2022                    National Outstanding Youth Science Foundation Recipient

2020                    Ministry of Education Natural Science Second Prize

2013                    Huo Yingdong Education Foundation Young Teacher Award

2009                    Ministry of Education Outstanding Talents of the New Century 

· Research Topics

Multi scale nonergodic dynamic models, scientific computing, deep learning algorithms

· Publications

1. Solving bivariate kinetic equations for polymer diffusion using deep learning. Heng WangWeihua DenggJournal of Machine Learning 20243, 2, 215-244.

2. Anomalous and nonergodic multiscale modeling, analyses, and algorithms. Weihua Deng. Science China Mathematics 202353, 8, 1039-1066.

3. Feynman-Kac transform for anomalous processes. Zhenqing Chen, Weihua Deng, Pengbo Xu. SIAM Journal on Mathematical Analysis 202153, 5, 6017-6047.

4. Anisotropic nonlocal diffusion operators for normal and anomalous dynamics. Weihua Deng, Xudong Wang, Pingwen Zhang. Multiscale Modeling and Simulation: A SIAM Interdisciplinary Journal 202018, 1, 415-443.

5. Boundary problems for the fractional and tempered fractional operators. Weihua Deng, Buyang Li, Wenyi Tian, Pingwen Zhang. Multiscale Modeling and Simulation: A SIAM Interdisciplinary Journal 201816, 1, 125-149.

6. Time discretization of a tempered fractional Feynman-Kac equation with measure data. Weihua Deng, Buyang Li, Zhi Qian, Hong Wang. SIAM Journal on Numerical Analysis 201856, 6, 3249-3275.

7. Finite element method for the space and time fractional Fokker-Planck equation. Weihua Deng. SIAM Journal on Numerical Analysis 200947, 1, 204-226.


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