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A multiscale separated representation to compute the mechanical behavior of composites with periodic microstructure

Article dans une revue avec comité de lecture
Auteur
METOUI, Sondes
ccPRULIERE, Etienne
ccAMMAR, Amine
211916 Laboratoire Angevin de Mécanique, Procédés et InnovAtion [LAMPA]
ccDAU, Frédéric
ccIORDANOFF, Ivan

URI
http://hdl.handle.net/10985/14855
DOI
10.1016/j.matcom.2017.07.010
Date
2018
Journal
Mathematics and Computers in Simulation

Résumé

The requirements for advanced numerical computations are very high when studying the multiscale behavior of heterogeneous structures such as composites. For the description of local phenomena taking place on the microscopic scale, the computation must involve a fine discretization of the structure. This condition leads to problems with a high number of degrees of freedom that lead to prohibitive computational costs when using classical numerical methods such as the finite element method (FEM). To overcome these problems, this paper presents a new domain decomposition method based on the proper generalized decomposition (PGD) to predict the behavior of periodic composite structures. Several numerical tests are presented. The PGD results are compared with those obtained using the classical finite element method. A very good agreement is observed.

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I2M_SD_2017_METOUI_.pdf
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Cette publication figure dans le(s) laboratoire(s) suivant(s)

  • Institut de Mécanique et d’Ingénierie de Bordeaux (I2M)
  • Laboratoire Angevin de Mécanique, Procédés et InnovAtion (LAMPA)

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • The proper generalized decomposition for the simulation of delamination using cohesive zone model 
    Article dans une revue avec comité de lecture
    METOUI, Sondes; ccPRULIERE, Etienne; ccAMMAR, Amine; ccDAU, Frédéric; ccIORDANOFF, Ivan (Wiley, 2014)
    The use of cohesive zone models is an efficient way to treat the damage, especially when the crack path is known a priori. This is the case in the modeling of delamination in composite laminates. However, the simulations ...
  • A reduced model to simulate the damage in composite laminates under low velocity impact 
    Article dans une revue avec comité de lecture
    METOUI, Sondes; ccPRULIERE, Etienne; ccAMMAR, Amine; ccDAU, Frédéric (Elsevier, 2018)
    This article presents an efficient numerical strategy to simulate the damage in composite laminates under low velocity impact. The proposed method is based on a separated representation of the solution in the context of ...
  • A reduced numerical strategy based on PGD for composite shell structures simulations 
    Communication sans acte
    METOUI, Sondes; ccPRULIERE, Etienne (Young Investigators Conference, 2013)
    This paper explores an alternative to shell computation. The proposed strategy uses the Proper Generalized Methods based on a separated representation. The idea is to solve the full 3D solid problem separating the in-plane ...
  • Numerical investigations on a yarn structure at the microscale towards scale transition 
    Article dans une revue avec comité de lecture
    DEL SORBO, Pietro; ccGIRARDOT, Jeremie; ccDAU, Frédéric; ccIORDANOFF, Ivan (Elsevier, 2017)
    Since the beginning of the last decade, few examples of multifilament models for dry fabrics have been presented in literature. This work deals with the simulation of a single yarn subjected to transverse impact. Inspired ...
  • 3D coupling approach between discrete and continuum models for dynamic simulations (DEM–CNEM) 
    Article dans une revue avec comité de lecture
    CHARLES, Jean-Luc; ILLOUL, Lounès; ccIORDANOFF, Ivan; ccDAU, Frédéric; ccJEBAHI, Mohamed (Elsevier, 2013)
    The coupling between two dissimilar numerical methods presents a major challenge, especially in case of discrete–continuum coupling. The Arlequin approach provides a flexible framework and presents several advantages in ...

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