一、个人简介
费明稳,安徽六安人,教授,博士生导师,副院长,安徽师范大学“学科领军人才”,安徽省学术和技术带头人后备人选。2010年博士毕业于南京大学(导师:尹会成),2011年9月至2013年8月在中国科学院数学与系统科学研究院从事博士后研究(导师:张平)。曾应邀访问新加坡国立大学、美国佛罗里达州立大学、美国佐治亚理工学院、香港中文大学、德国雷根斯堡大学等。目前主要从事Navier-Stokes方程边界层和双相流模型界面动力学等偏微分方程理论方面研究。
E-mail:mwfei@ahnu.edu.cn。
二、获奖
安徽省教学成果奖二等奖(2/7,2020)
安徽省教学成果奖特等奖(6/8,2021)
安徽省研究生教学成果奖一等奖(4/11,2022)
指导全国大学生数学竞赛(安徽赛区)二等奖1项(2019)
指导全国大学生数学竞赛(安徽赛区)一等奖1项(2020)
安徽师范大学青年教师教学基本功大赛二等奖(2018)
安徽师范大学年度科研人物(2019)
安徽师范大学优秀共产党员(2023)
三、教学研究
《数学教育学报》理事
安徽省教学团队《数学分析》带头人
安徽省课程思政示范课程《数学分析》负责人
安徽省线下一流课程《数学分析》负责人
安徽师范大学课程思政示范项目《数学分析》负责人
安徽师范大学线下一流课程项目《数学分析》负责人
安徽师范大学本科教学示范公开课第20讲
安徽师范大学本科教学示范观摩课第224讲
安徽师范大学“教育2035”系列报告第24讲
安徽师范大学课程思政示范教学观摩课(2023-2024-1)
四、主持科研项目
9.国家自然科学基金面上项目(合作研究),12471222,2025/01-2028/12
8.国家自然科学基金面上项目,12271004,2023/01-2026/12
7.国家自然科学基金面上项目(合作研究),11971357,2020/01-2023/12
6.国家自然科学基金面上项目,11871075,2019/01-2022/12
5.国家自然科学基金青年项目,11301005,2014/01-2016/12
4.安徽省杰出青年基金项目,2308085J10,2023/09-2026/08
3.安徽省高校学科(专业)拔尖人才学术资助项目,gxbjZD2022009,2023/01-2015/12
2.安徽省自然科学基金面上项目,1608085MA13,2016/07-2018/6
1.安徽省高校优秀青年人才基金重点项目,2013SQRL011ZD,2014/01-2016/12
五、科研论文
26. Local-in-time existence of strong solutions to a quasi-incompressible Cahn-Hilliard-Navier-Stokes system, arXiv: 2411.09455. (with Xiang Fei, Daozhi Han and Yadong Liu)
25. Prandtl-Batchelor flows with a point vortex on a disk, arXiv: 2410.07759. (with Zhi Chen, Zhiwu Lin and Jianfeng Zhao)
24. Vanishing viscosity limit of the Navier-Stokes equations in a horizontally periodic strip, arXiv: 2312.14376. (with Xinghong Pan and Jianfeng Zhao)
23. Prandtl-Batchelor flows on an annulus, Advances in Mathematics, 2024, 458, Paper No. 109994, 86 pp. (with Chen Gao, Zhiwu Lin and Tao Tao)
22. Sharp interface limit for a Navier-Stokes/Allen-Cahn system in the case of a vanishing mobility,Calculus of Variations and Partial Differential Equations, 2024, 63: 94. (with Helmut Abels and Maximilian Moser)
21. Ill-posedness of the hyperbolic Keller-Segel model in Besov spaces, Zeitschrift furAngewandteMathematik und Physik, 2023, 74,Paper No. 58, 10 pp.(with Xiang Fei, Yanghai Yu)
20. Sharp interface limit for a Navier-Stokes/Allen-Cahn system with different viscosities, SIAM Journal on Mathematical Analysis,2023,55:4039-4088. (with Helmut Abels)
19. Matrix-valued Allen-Cahn equation and the Keller-Rubinstein-Sternberg problem,Inventiones Mathematicae, 2023,233:1-80.(with Fanghua Lin,Wei Wang and Zhifei Zhang)
18. Prandtl-Batchelor flows on a disk, Communications in Mathematical Physics, 2023, 397:1103–1161.(with Chen Gao, Zhiwu Lin and Tao Tao)
17. Phase-field approximation of the Willmore flow, Archive for Rational Mechanics and Analysis, 2021,241:1655-1706. (with Yuning Liu)
16. Global well-posedness for the 2D MHD-Boussinesq system with temperature-dependent diffusion, Applied Mathematics Letters, 2020,106:106399.(with Yanghai Yu)
15. Vanishing porosity limit of the coupled Stokes-Brinkman system, Journal of Mathematical Analysis and Applications, 2020,486:123895. (with Dongjuan Niu and Xiaoming Wang)
14. Sharp interface limit of a diffuse interface model for tumor growth, Communications in Mathematical Sciences, 2019,17:1557-1593. (with Tao Tao and Wei Wang)
13. On the Isotropic-Nematic phase transition for the liquid crystal, Peking Mathematical Journal, 2018, 1:141-219. (with Wei Wang, Pingwen Zhang and Zhifei Zhang)
12. On the zero-viscosity limit of the Navier-Stokes equations in R_+^3 without analyticity, Journal de Mathématiques Pures et Appliquées, 2018, 112:170-229.(with Tao Tao and Zhifei Zhang)
11. Global sharp interface limit of the Hele-Shaw-Cahn-Hilliard system, Mathematical Methods in the Applied Sciences, 2017, 40: 833-852.
10.Initial-boundary layer associated with the nonlinear Darcy-Brinkman-Oberbeck-
Boussinesq system, Physica D: Nonlinear Phenomena, 2017, 338: 42-56. (with Daozhi Han and Xiaoming Wang)
9. Dynamics of the Nematic-Isotropic sharp interface for the liquid crystal, SIAM Journal on Applied Mathematics, 2015, 75: 1700-1724. (with Wei Wang, Pingwen Zhang and Zhifei Zhang)
8. Nodal solution of 2-D critical nonlinear Schrödinger equations with potentials vanishing at infinity, Discrete and Continuous Dynamical Systems Series A, 2015, 35: 2921-2948. (with Huicheng Yin)
7. Sign-changing multi-peak solutions for nonlinear Schrödinger equations with compactly supported potential, Acta Applicandae Mathematicae, 2013, 127: 137–154.
6. Bound states of 2-D nonlinear Schrödinger equations with potentials tending to zero at infinity, SIAM Journal on Mathematical Analysis, 2013, 45: 2299–2331. (with Huicheng Yin)
5. Bound states of asymptotically linear Schrödinger equations with compactly supported potentials, Pacific Journal of Mathematics,2013, 261:335–367. (with Huicheng Yin)
4. On the existence of the weak solution with local energy inequality to the 3-D inhomogeneous incompressible Navier-Stokes equations, Nonlinear Analysis, 2013, 85:248-252.
3. The integrability of dispersive Hunter-Saxton equation, Journal of Partial Differential Equations, 2012, 25:330–334.
2. Existence and concentration of bound states of a class of nonlinear Schrödinger equations in R^2 with potential tending to zero at infinity, Acta Mathematica Sinica(English Series), 2012, 28:2243-2274. (with Dacheng Cui and Jihui Zhang)
1. Existence and concentration of bound states of nonlinear Schrödinger equations with compactly supported and competing potentials, Pacific Journal of Mathematics, 2010, 244:261-296.(with Huicheng Yin)