人物經歷
尚閆,男,現任南京航空航天大學副研究員(2019.6-),碩士生導師,航空航天交叉研究院書記。16年博士畢業於清華大學力學專業,11年本科畢業於華中科技大學工程力學專業。主要從事固體力學新型數值方法理論與套用研究,研究興趣包括(1)高精度有限元方法與多尺度分析;(2)CAE軟體高精度單元技術;(3)數據驅動計算力學;(4)複雜航空結構仿真。
主持國家自然科學基金面上項目等課題10餘項,參與國家科技重大專項、重點研發青年科學家項目等。以第一作者/通訊作者身份已在International Journal for Numerical Methods in Engineering(10篇,其中封面文章2篇)、Computer Methods in Applied Mechanics and Engineering、Archives of Computational Methods in Engineering、Engineering with Computers等期刊發表SCI論文30餘篇,授權發明專利3項,軟體著作權6項。 兼任江蘇省計算力學專委會委員、固體力學專委會委員、南方計算力學聯絡委員會委員。在教學方面,承擔工程力學專業本科生課程《彈性力學》、《固體力學基礎》、《機器學習與智慧型計算》,研究生課程《非線性連續體的有限元分析》、《固體力學計算方法前沿》。主持校教改項目1項,參與教改項目2項,發表教改論文2篇。獲2024年度“范欽珊獎教金”。
研究方向
新型高精度有限元方法研究
編織複合材料的多尺度計算與最佳化研究
橡膠密封件磨損仿真
主要成就
代表性期刊論文:
Yan Shang*, Mao-Dong Pan, Song Cen, Chen-Feng Li, Challenges and advances in conventional finite elements for couple stress elasticity: A comprehensive review, Archives of Computational Methods in Engineering, 2025, published online.
Yan Shang*, Sheng-Feng Wang, Mao-Dong Pan, Song Cen, Bing-Bing Chen, Chen-Feng Li, Computational homogenization of non-centrosymmetric composites with concurrent flexoelectric and piezoelectric effects using consistent couple stress theory, Composite Structures, 2026, 376: 119843.
Yan Shang*, Xiao-Jie Li, Mao-Dong Pan, Song Cen, Bing-Bing Chen, Chen-Feng Li, Mesh-distortion immune Trefftz element for flexoelectric Kirchhoff plates within consistent couple stress theory, International Journal for Numerical Methods in Engineering, 2025, 126(22): e70179.
Ming-Jun Zhao, Song Cen*, Yan Shang, Chen-Feng Li, Modeling size effects in elasticity with c virtual elements: a two-dimensional formulation for modified couple stress theory, International Journal for Numerical Methods in Engineering, 2026.
Yan Shang*, Ming Sun, Song Cen, Chen-Feng Li, Computational homogenization of flexoelectric composites within the consistent couple stress theory, Computer Methods in Applied Mechanics and Engineering, 2025, 437: 117762.
Zhuo Deng, Shi-Xuan Liu, Song Cen, Ming Sun, Yan Shang*, Corotational unsymmetric membrane element formulation for geometric nonlinear analysis of flexoelectric solids within the consistent couple stress theory, International Journal for Numerical Methods in Engineering, 2025, 126(11): e70045.
Song-Hao Wang, Zheng-Hua Qian*, Yan Shang*, Three-dimensional geometrically nonlinear analysis of functionally graded microshell structures using corotational finite element method based on modified couple stress theory, Computers and Mathematics with Applications, 2025, 190: 122-153.
Yan Shang*, Zhuo Deng, Song Cen, Chen-Feng Li. Penalty hexahedral element formulation for flexoelectric solids based on consistent couple stress theory, International Journal for Numerical Methods in Engineering, 2024, 125(1): e7336.
Song-Hao Wang, Zheng-Hua Qian*, Yan Shang*, Size-dependent vibration analysis of porous 3D-FG microshells in complex thermal environments using a neural network enhanced finite element model, Case Studies in Thermal Engineering, 2024, 61: 104887.
Yu-Hao Mao, Yan Shang*, Song Cen, Chen-Feng Li. An efficient 3-node triangular plate element for static and dynamic analyses of microplates based on modified couple stress theory with micro-inertia, Engineering with Computers, 2023, 39: 3061-3084.
Huan-Pu Wu, Yan Shang*, Song Cen, Chen-Feng Li. Penalty C0 8-node quadrilateral and 20-node hexahedral elements for consistent couple stress elasticity based on the unsymmetric finite element method, Engineering Analysis with Boundary Elements, 2023, 147: 302-319.
Yan Shang*, Huan-Pu Wu, Song Cen, Chen-Feng Li. An efficient 4-node facet shell element for the modified couple stress elasticity. International Journal for Numerical Methods in Engineering, 2022, 123(4): 992-1012.
Yan Shang*, Ya-Dong Liu, Shi-Xuan Liu. Trefftz-unsymmetric finite element for bending analysis of orthotropic plates, Engineering with Computers, 2022, 38:1065-1079.
Ru-Xia Ma, Song Cen*, Yan Shang, Chen-Feng Li. Extension of the unsymmetric 8-node hexahedral solid element US-ATFH8 to 3D hyper-elastic finite deformation analysis, International Journal for Numerical Methods in Engineering, 2022, 123(23): 5749-5778.
Yan Shang*, Chen-Feng Li, Kang-Yu Jia. 8-node hexahedral unsymmetric element with rotation degrees of freedom for modified couple stress elasticity, International Journal for Numerical Methods in Engineering, 2020, 121(12): 2683-2700.
Yan Shang*, Zheng-Hua Qian*, Song Cen, Chen-Feng Li. A simple unsymmetric 4-node 12-DOF membrane element for the modified couple stress theory, International Journal for Numerical Methods in Engineering, 2019, 119(9): 807-825.
Yan Shang*, Wengen Ouyang. 4-node unsymmetric quadrilateral membrane element with drilling DOFs insensitive to severe mesh-distortion, International Journal for Numerical Methods in Engineering, 2018, 113(10): 1589-1606.
Zhi Li, Song Cen*, Cheng-Jin Wu, Yan Shang, et al., High-performance geometric nonlinear analysis with the unsymmetric 4-node, 8-DOF plane element US-ATFQ4, International Journal for Numerical Methods in Engineering, 2018, 114(9): 931-954.
Yan Shang, Song Cen*, Zhi Li, Chen-Feng Li. Improved hybrid displacement function (IHDF) element scheme for analysis of Mindlin-Reissner plate with edge effect, International Journal for Numerical Methods in Engineering, 2017, 111(12): 1120-1169.
Yan Shang, Song Cen*, Chen-Feng Li, Jun-Bin Huang, An effective hybrid displacement function element method for solving the edge effect of Mindlin-Reissner plate, International Journal for Numerical Methods in Engineering, 2015, 102(8): 1449-1487.
Song Cen*, Shang Yan, Li Chen-Feng, Li Hong-Guang, Hybrid displacement function element method: a simple hybrid-Trefftz stress element method for analysis of Mindlin-Reissner plate, International Journal for Numerical Methods in Engineering, 2014, 98(3): 203-234.