• X. Zou, M. Conti, P. Diez, F. Auricchio
    Int. J. Numer. Meth. Engng. (2018). (Preprint) Vol. 113 (2), pp. 230-251

    Abstract
    Proper generalized decomposition (PGD) is often used for multi-query and fast-response simulations. It is a powerful tool alleviating the curse of dimensionality affecting [...]

  • H. Garikapati, S. Zlotnik, C. Verhoosel, E. Brummelen, P. Diez
    Computational Mechanics (2019). (Preprint) pp. 1-23

    Abstract
    Understanding the failure of brittle heterogeneous materials is essential in many applications. Heterogeneities in material properties are frequently modeled through random [...]

  • F. Chinesta, P. Diez, D. Borzacchiello, M. Malik, R. García-Blanco
    Electric Power Systems Research (2016). (Preprint) Vol. 140, pp. 201-208

    Abstract
    This paper illustrates the construction of a new class of iterative solvers for power flow calculations based on the method of Alternating Search Directions. This method is [...]

  • B. Oliveira, J. Afonso, S. Zlotnik, P. Diez
    Geophysical Journal International (2018). (Preprint) Vol. 212 (1), pp. 345-388

    Abstract
    We present a conceptual and numerical approach to model processes in the Earth’s interior that involve multiple phases that simultaneously interact thermally, mechanically [...]

  • J. Egozcue, G. Grande, P. Diez
    Revista Internacional de Cálculo de Estructuras (1997). Vol. 2 (1), pp. 35-58

    Abstract
    Vulnerability of civil structures and systems under seismic actions have been extensively used and studied in the last decade. However, the goals of those studies are very [...]

  • R. García-Blanco, P. Diez, D. Borzacchiello, F. Chinesta
    International Energy Conference (ENERGYCON) (2016). (preprint) pp, 1-6

    Abstract
    This paper presents an “offline-online” strategy for optimal allocation and sizing of Distributed Generation. In traditional optimization approaches, each function [...]

  • A. Sibileau, A. García-González, F. Auricchio, S. Morganti, P. Diez
    Computational Mechanics (2018). (Preprint) Vol. 62 (4), pp. 871-891

    Abstract
    Architectured materials (or metamaterials) are constituted by a unit-cell with a complex structural design repeated periodically forming a bulk material with emergent mechanical [...]

  • P. Diez, A. Huerta
    Comput. Methods Appl. Mech. Engrg., (1999). Vol. 176 (1-4), pp. 215-229

    Abstract
    In h-adaptivity, a remeshing strategy is needed to compute the distribution of required element size using the estimated error distribution. Several authors have introduced [...]

  • R. Hospital-Bravo, J. Sarrate, P. Diez
    Comput. Methods Appl. Mech. Engrg., (2017). (Preprint) Vol. 111 (8), pp. 703-723

    Abstract
    This paper details a semi‐analytical procedure to efficiently integrate the product of a smooth function and a complex exponential over tetrahedral elements. These highly [...]

  • P. Diez, S. Zlotnik, A. Huerta
    Comput. Methods Appl. Mech. Engrg. (2017). (Preprint) Vol. 326, pp. 223-240

    Abstract
    Design optimization and uncertainty quantification, among other applications of industrial interest, require fast or multiple queries of some parametric model. The Proper [...]

  • R. García-Blanco, D. Borzacchiello, F. Chinesta, P. Diez
    Int. J. Numer. Meth. Engng. (2017). Vol. 111 (6), pp. 529-552

    Abstract
    The parametric analysis of electric grids requires carrying out a large number of Power Flow computations. The different parameters describe loading conditions and grid properties. [...]

  • P. Diez, S. Zlotnik, A. García-González, A. Huerta
    Comptes Rendus Mécanique (2018). (Preprint) Vol. 346 (7), pp. 501-514

    Abstract
    Proper Generalized Decomposition (PGD) is devised as a computational method to solve high-dimensional boundary value problems (where many dimensions are associated [...]

  • M. Signorini, S. Zlotnik, P. Diez
    Int. J. Numer. Meth. Engng. (2017). (Preprint) Vol. 109, (8), pp. 1085-1102

    Abstract
    The identification of the geological structure from seismic data is formulated as an inverse problem. The properties and the shape of the rock formations in the subsoil are [...]

  • H. Garikapati, C. Verhoosel, E. Brummelen, S. Zlotnik, P. Diez
    Computational Geosciences (2019). (Preprint) Vol. 23 (1), pp. 81-105

    Abstract
    Hydraulic fracturing processes are surrounded by uncertainty, as available data is typically scant. In this work, we present a sampling-based stochastic analysis of the hydraulic [...]

  • K. Serafin, B. Magnain, E. Florentin, N. Parés, P. Diez
    Int. J. Numer. Meth. Engng. (2017). (Preprint) Vol. 110 (5), pp. 440-466

    Abstract
    This work focuses on providing accurate low-cost approximations of stochastic finite elements simulations in the framework of linear elasticity. In [E. Florentin, P. Diez, [...]

  • R. García-Blanco, P. Diez, D. Borzacchiello, F. Chinesta
    Archives of Comp. Meths. Engng. (2018). (Preprint) Vol. 25 (4), pp. 1003-1026

    Abstract
    The power flow model performs the analysis of electric distribution and transmission systems. With this statement at hand, in this work we present a summary of those solvers [...]

  • L. Steffens, P. Diez, M. Alves
    Tendências em Matemática Aplicada e Computacional (2016). (preprint) Vol. 17 (1), pp. 35-53

    Abstract
    O objetivo deste artigo é estudar a eficiência e a robustez de técnicas adaptativas e estimativas de erro orientadas por metas para um benchmark test. [...]

  • D. Dorribo, L. Greve, P. Diez, I. Arias, X. Larráyoz-Izcara
    Theoretical and Applied Fracture Mechanics (2018). (Preprint) Vol. 96, pp. 497-508

    Abstract
    Predicting the bearing capacity of resistance spot welds (RSW) during vehicle crash tests has become a crucial task for the automotive industry, since the recent introduction [...]

  • R. Hospital-Bravo, J. Sarrate, P. Diez
    Computational Mechanics (2016). (Preprint) Vol. 57 (5), pp. 717-732

    Abstract
    A new 2D numerical model to predict the underwater acoustic propagation is obtained by exploring the potential of the Partition of Unity Method (PUM) enriched with plane waves. [...]

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