NASTRAN

MSC Nastran is the world’s most widely used Finite Element Analysis (FEA) solver that helped MSC Software become recognized in 2011 as one of the ”10 Original Software Companies”. When it comes to solving for stress/strain behavior, dynamic and vibration response and thermal gradients in real-world systems, MSC Nastran is recognized as the most trusted multidiscipline solver in the world


References in zbMATH (referenced in 174 articles )

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  1. Sváček, Petr: On implementation aspects of finite element method and its application (2019)
  2. Bi, Zhuming: Finite element analysis applications. A systematic and practical approach (2018)
  3. Tromme, Emmanuel; Held, Alexander; Duysinx, Pierre; Brüls, Olivier: System-based approaches for structural optimization of flexible mechanisms (2018)
  4. Stadlmayr, Daniel; Witteveen, Wolfgang; Steiner, Wolfgang: A generalized constraint reduction method for reduced order MBS models (2017)
  5. Yang, Wei; Tang, Xiaolin: Numerical analysis for heat transfer laws of a wet multi-disk clutch during transient contact (2017)
  6. Brischetto, Salvatore; Tornabene, F.; Fantuzzi, N.; Viola, E.: 3D exact and 2D generalized differential quadrature models for free vibration analysis of functionally graded plates and cylinders (2016)
  7. Faroughi, S.; Ahmadian, H.: An inverse approach in obtaining shape functions for a superconvergent thin plate element (2016)
  8. Koric, Seid; Gupta, Anshul: Sparse matrix factorization in the implicit finite element method on petascale architecture (2016)
  9. Lee, Joong Seok; Deckers, Elke; Jonckheere, Stijn; Desmet, Wim; Kim, Yoon Young: A direct hybrid finite element-wave based modelling technique for efficient analysis of poroelastic materials in steady-state acoustic problems (2016)
  10. Vogeltanz, Tomáš: A survey of free software for the design, analysis, modelling, and simulation of an unmanned aerial vehicle (2016)
  11. Wang, Dongdong; Liang, Qingwen; Zhang, Hanjie: A superconvergent isogeometric formulation for eigenvalue computation of three dimensional wave equation (2016)
  12. Felippa, Carlos; Guo, Qiong; Park, K.: Mass matrix templates: general description and 1D examples (2015)
  13. Jung, Jaesoon; Hyun, Jaeyub; Goo, Seongyeol; Wang, Semyung: An efficient design sensitivity analysis using element energies for topology optimization of a frequency response problem (2015)
  14. Kim, Nam-Ho: Introduction to nonlinear finite element analysis (2015)
  15. Ferretti, Gianni; Leva, Alberto; Scaglioni, Bruno: Object-oriented modelling of general flexible multibody systems (2014)
  16. Zhang, Jianming: An automatic simulation tool for thermal analysis of gravity dams by BFM (2014)
  17. Morino, Hiroyuki; Obayashi, Shigeru: Knowledge extraction for structural design of regional jet horizontal tail using multi-objective design exploration (MODE) (2013) ioport
  18. Senjanović, Ivo; Tomić, Marko; Vladimir, Nikola; Cho, Dae Seung: Analytical solution for free vibrations of a moderately thick rectangular plate (2013)
  19. Bažant, Zdeněk P.; Gattu, Mahendra; Vorel, Jan: Work conjugacy error in commercial finite-element codes: its magnitude and how to compensate for it (2012)
  20. Naets, Frank; Tamarozzi, Tommaso; Heirman, Gert H. K.; Desmet, Wim: Real-time flexible multibody simulation with global modal parameterization (2012)

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