郭玉杰

个人信息Personal Information

副教授

招生学科专业:
航空宇航科学与技术 -- 【招收硕士研究生】 -- 航空学院
机械 -- 【招收硕士研究生】 -- 航空学院

性别:男

毕业院校:荷兰代尔夫特理工大学

学历:荷兰代尔夫特理工大学

学位:工学博士学位

所在单位:航空学院

办公地点:逸夫楼A16-218

联系方式:13912953870

电子邮箱:

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个人简介Personal Profile

从事飞行器设计方面的研究,包括结构计算力学、复合材料结构设计与优化、CAD/CAE一体化、新概念飞行器设计及数字孪生等方向。受国家自然科学基金面上及青年基金、江苏省自然科学基金青年基金、国家重点研发计划、中国商飞等项目的资助,入选2017江苏双创博士,担任江苏省轻型通用航空飞行器技术协同创新中心副主任,江苏省力学学会青年工作委员会委员,发表SCI论文二十余篇,包括计算力学顶级期刊CMAME以及IJNME,曾被选为期刊封面,授权发明专利2项。讲授《复合材料力学》、《飞机结构设计-英文》、《航空航天概论》、《工程设计工具-CATIA》等课程。指导学生发表了多篇SCI、EI论文以及发明专利等,并且获得国家奖学金、校优秀学位论文、学术会议优秀论文等荣誉,指导学生参加科创竞赛并获得一等奖等多个奖项,包括“国际无人飞行器创新大奖赛”一等奖、“CADC中国国际飞行器设计挑战赛”单项一等奖+团体一等奖、“中国机器人大赛”一等奖等,学生就业去向包括航空、航天等多家科研院所及单位。详细信息参见个人主页https://sites.google.com/site/nuaayujieguo/以及ResearcherID.




代表性论文:

[1] Yujie Guo*, Jason Heller, Thomas J.R. Hughes, Martin Ruess, Dominik Schillinger, Variationally consistent isogeometric analysis of trimmed thin shells at finite deformations, based on the STEP exchange format, Computer Methods in Applied Mechanics and Engineering, 2018, 336: 39-79.

[2] Y. Guo*, M. Pan, X. Wei*, F. Luo, F. Sun, M. Ruess, Implicit dynamic buckling analysis of thin-shell isogeometric structures considering geometric imperfections, International Journal for Numerical Methods in Engineering, 2023, 124: 1055-1088.

[3] Y. Guo, Z. Chen*, X. Wei*, Z. Hong, Isogeometric dynamic buckling analysis of trimmed and multi-patch thin-shell structures, AIAA Journal, 2023.

[4] Yujie Guo*, Zhihui Zou, Martin Ruess, Isogeometric multi-patch analyses for mixed thin shells in the framework of non-linear elasticity, Computer Methods in Applied Mechanics and Engineering, 2021, 113771.

[5] Yujie Guo*, Martin Ruess, Nitsche's method for a coupling of isogeometric thin shells and blended shell structures, Computer Methods in Applied Mechanics and Engineering, 2015, 284: 881-905.

[6] Yujie Guo*, Huy Q. Do, Martin Ruess*, Isogeometric stability analysis of thin shells: From simple geometries to engineering models, International Journal for Numerical Methods in Engineering, 2019, 118: 433-458.

[7] Yujie Guo, Martin, Ruess, Dominik Schillinger*, A parameter-free variational coupling approach for trimmed isogeometric thin shells, Computational Mechanics, 2017, 59: 693-715.

[8] Yujie Guo*, Global-local model coupling for composite shell structures in the framework of isogeometric analysis, Composite Structures, 2017, 176: 617-629.

[9] Yujie Guo*, Martin Ruess, A layerwise isogeometric approach for NURBS-derived laminate composite shells, Composite Structures, 2015, 124: 300-309.

[10] M. Pan, R. Zou, W. Tong, Y. Guo, F. Chen*, G1-smooth planar parameterization of complex domains for isogeometric analysis, Computer Methods in Applied Mechanics and Engineering, 2023, 417: 116330.

[11] Zhi Hong, Daniel Peeters, Yujie Guo, Efficient strength optimization of variable stiffness laminates using lamination parameters with global failure index, Computers & Structures, 2022, 271: 106856.

[12] 郭玉杰*, 吴晗浪, 李薇, 李迎港, 吴剑晨, 基于等几何分析的参数化曲梁结构非线性动力学降阶模型研究, 工程力学, 2022, 39: 31-48.

[13] H. Do, P. Veerajagadeshwar, F.B. Sun, Y. Guo, A.V. Le, O. Weeger, R.E. Mohan, N.H.K. Nhan, P.V. Duc, M.B. Vu, Combined grid and heat conduction optimization for staircase cleaning robot path planning, Automation in Construction, 2022, 141: 104447.

[14] J. Wu, Y. Guo*, F. Wang, Thermally induced vibration analysis of flexible beams based on isogeometric analysis, Computer Modeling in Engineering & Sciences, 2021, 128(3): 1007-1031.

[15] Y. Gao, Y. Guo*, S. Zheng, A NURBS-based finite cell method for structural topology optimization under geometric constriants, Computer Aided Geometric Design, 2019, 72: 1-18.




主要研究工作:


1. CAD/CAE一体化



基于等几何方法的复杂薄壁结构的CAD/CAE无缝融合


2. 结构计算力学


结构屈曲(静力、非线性)


结构屈曲(动力、非线性)


高效等几何非线性壳单元


结构动力学


3. 结构优化


结构拓扑优化


复合材料曲线铺放优化


4. 路径规划


爬楼机器人路径规划研究(合作单位:Singapore University of Technology and Design)




  • 教育经历Education Background
  • 工作经历Work Experience
    2016.2 至今
    • 南京航空航天大学
    • 航空学院
  • 研究方向Research Focus
  • 社会兼职Social Affiliations
  • 结构计算力学
  • 等几何分析
  • 结构稳定性、结构动力学、结构优化
  • 复合材料结构及多功能结构