Sunday, January 22, 2017
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Mathematical and Computational Modelling
Research TopicPrincipal Investigator
Advanced NM for computational mechanics (X-FEM, G-FEM, meshless methods, etc). High-order solvers with high-fidelity geometrical resolution. A. Huerta
Reduced-order modeling for fast and multiple queries, real time optimization and uncertainty quantification. Goal-oriented error assessment and mesh adaptivity.P. Diez
Relevant Publications

Huerta A. and Liu W.K.
Viscous flow with large free surface motion.
Computer Methods in Applied Mechanics and Engineering, Vol. 69 (3), pp. 277-324, 1988

Díez P., Egozcue J.J. and Huerta A.
A posteriori error estimation for standard finite element analysis.
Computer Methods in Applied Mechanics and Engineering, Vol. 163 (1), pp. 141-157, 1998

Díez P. and Huerta A.
A unified approach to remeshing strategies for finite element h-adaptivity.
Computer Methods in Applied Mechanics and Engineering, Vol. 176 (1), pp.215-229, 1999

Huerta A., Rodríguez A., Díez P. and Sarrate J.
Adaptive finite element strategies based on error assessment.
Wiley & Sons, 1999

Huerta A. and Díez P.
Error estimation including pollution assessment for nonlinear finite element analysis.
Computer Methods in Applied Mechanics and Engineering, Vol. 181 (1), pp. 21-41, 2000

Arroyo M. and Belytschko T.
An atomistic-based finite deformation membrane for single layer crystalline films.
Journal of the Mechanics and Physics of Solids, Vol. 50 (9), pp. 1941-1977, 2002

Arroyo M. and Belytschko T.
Nonlinear mechanical response and rippling of thick multiwalled carbon nanotubes.
Physical Review Letters, Vol. 91 (21), pp. 215505, 2003

Donea J. and Huerta A.
Finite element methods for flow problems.
John Wiley & Sons, 2003

Fernández-Méndez S. and Huerta A.
Imposing essential boundary conditions in mesh-free methods.
Computer Methods in Applied Mechanics and Engineering, Vol. 193 (12), pp. 1257-1275, 2004

Arroyo M. and Belytschko T.
Finite crystal elasticity of carbon nanotubes based on the exponential Cauchy-Born rule.
Physical Review B, Vol. 69 (11), pp. 115415, 2004

Arroyo M. and Ortiz M.
Local maximum-entropy approximation schemes: a seamless bridge between finite elements and meshfreemethods.
Int. J. for Numerical Methods in Engng., Vol. 65 (13), pp. 2167-2202, 2006

Jason L., Huerta A., Pijaudier-Cabot J. and Ghavamian S.
An elastic plastic damage formulation for concrete: Application to elementary tests and comparison with anisotropic damage model.
Computer Methods in Applied Mechanics and Engineering, Vol. 195 (52), pp. 7077-7092, 2006

Parés N., Díez P. and Huerta A.
Subdomain-based flux-free a posteriori error estimators.
Computer Methods in Applied Mechanics and Engineering, Vol. 195 (4), pp. 297-323, 2006

Sevilla R., Fernández-Méndez S. and Huerta A.
NURBS-enhanced finite element method (NEFEM).
International Journal for Numerical Methods in Engineering, 76 (1), Vol.56-83, 2008

Lu Q., Arroyo M. and Huang R.
Elastic bending modulus of monolayer graphene.
Journal of Physics D: Applied Physics, Vol. 42 (10), pp. 102002, 2009