Suchergebnisse - Finite element modelling in high-performance computing

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    High performance multi-platform computing for large-scale image-based finite element modeling of bone von Knowles, Nikolas K., Neeteson, Nathan, Boyd, Steven K.

    ISSN: 0169-2607, 1872-7565, 1872-7565
    Veröffentlicht: Elsevier B.V 01.10.2022
    Veröffentlicht in Computer methods and programs in biomedicine (01.10.2022)
    “… •Large-scale image-based finite element modeling software specifically developed for solid mechanics simulations of bone was characterized based on performance …”
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    3D magnetotelluric modeling using high-order tetrahedral Nédélec elements on massively parallel computing platforms von Castillo-Reyes, Octavio, Modesto, David, Queralt, Pilar, Marcuello, Alex, Ledo, Juanjo, Amor-Martin, Adrian, de la Puente, Josep, García-Castillo, Luis Emilio

    ISSN: 0098-3004, 1873-7803
    Veröffentlicht: Elsevier Ltd 01.03.2022
    Veröffentlicht in Computers & geosciences (01.03.2022)
    “… We present a routine for 3D magnetotelluric (MT) modeling based upon high-order edge finite element method (HEFEM …”
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    lifex-ep: a robust and efficient software for cardiac electrophysiology simulations von Africa, Pasquale Claudio, Piersanti, Roberto, Regazzoni, Francesco, Bucelli, Michele, Salvador, Matteo, Fedele, Marco, Pagani, Stefano, Dede’, Luca, Quarteroni, Alfio

    ISSN: 1471-2105, 1471-2105
    Veröffentlicht: London BioMed Central 13.10.2023
    Veröffentlicht in BMC bioinformatics (13.10.2023)
    “… This underscores the need for streamlined, accurate, and high-performance computational tools. Despite the dedicated endeavors of various research teams, comprehensive and user …”
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    lifex-fiber: an open tool for myofibers generation in cardiac computational models von Africa, Pasquale Claudio, Piersanti, Roberto, Fedele, Marco, Dede’, Luca, Quarteroni, Alfio

    ISSN: 1471-2105, 1471-2105
    Veröffentlicht: London BioMed Central 12.04.2023
    Veröffentlicht in BMC bioinformatics (12.04.2023)
    “… accurate, high-performance computational tools. Despite the efforts made by several research groups, no software for whole-heart fully-coupled cardiac simulations in the scientific community has reached full maturity yet …”
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    Semi-implicit BDF time discretization of the Navier–Stokes equations with VMS-LES modeling in a High Performance Computing framework von Forti, Davide, Dedè, Luca

    ISSN: 0045-7930, 1879-0747
    Veröffentlicht: Elsevier Ltd 31.08.2015
    Veröffentlicht in Computers & fluids (31.08.2015)
    “… ). For the spatial approximation of the problem, we use the Finite Element method, while we employ the Backward Differentiation Formulas (BDF …”
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    PETGEM: A parallel code for 3D CSEM forward modeling using edge finite elements von Castillo-Reyes, Octavio, de la Puente, Josep, Cela, José María

    ISSN: 0098-3004
    Veröffentlicht: Elsevier Ltd 01.10.2018
    Veröffentlicht in Computers & geosciences (01.10.2018)
    “… accurate modeling of 3D marine controlled-source electromagnetic (3D CSEM) problems. We employ the Nédélec Edge Finite Element Method …”
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    Development of the CAVEMAN Human Body Model: Validation of Lower Extremity Sub-Injurious Response to Vertical Accelerative Loading von Butz, Kent, Spurlock, Chad, Roy, Rajarshi, Bell, Cameron, Barrett, Paul, Ward, Aaron, Xiao, Xudong, Shirley, Allen, Welch, Colin, Lister, Kevin

    ISSN: 1532-8546
    Veröffentlicht: United States The Stapp Association 01.11.2017
    Veröffentlicht in Stapp car crash journal (01.11.2017)
    “… The CAVEMAN model is built upon the Zygote 50 percentile male human CAD model and uses a finite element modeling approach developed for high performance computing (HPC …”
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    A porohyperelastic scheme targeted at High-Performance Computing frameworks for the simulation of the intervertebral disc von Lialios, Dimitrios, Eguzkitza, Beatriz, Houzeaux, Guillaume, Casoni, Eva, Baumgartner, Laura, Noailly, Jérôme, Muñoz-Moya, Estefano, Gantenbein, Benjamin, Vázquez, Mariano

    ISSN: 0169-2607, 1872-7565, 1872-7565
    Veröffentlicht: Ireland Elsevier B.V 01.02.2025
    Veröffentlicht in Computer methods and programs in biomedicine (01.02.2025)
    “… The increased complexity of such models requires significant computational power that is available within high-performance computing systems …”
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    Inversion for Thermal Properties with Frequency Domain Thermoreflectance von Treweek, Benjamin, Akcelik, Volkan, Hodges, Wyatt, Jarzembski, Amun, Bahr, Matthew, Jordan, Matthew, McDonald, Anthony, Yates, Luke, Walsh, Timothy, Pickrell, Gregory

    ISSN: 1944-8252, 1944-8252
    Veröffentlicht: United States 24.01.2024
    Veröffentlicht in ACS applied materials & interfaces (24.01.2024)
    “… 3D integration of multiple microelectronic devices improves size, weight, and power while increasing the number of interconnections between components. One …”
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    Journal Article
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    Micro-mechanical finite element modeling of diagonal compression test for historical stone masonry structure von Zhang, Shenghan, Taheri Mousavi, Seyedeh Mohadeseh, Richart, Nicolas, Molinari, Jean-François, Beyer, Katrin

    ISSN: 0020-7683, 1879-2146
    Veröffentlicht: New York Elsevier Ltd 01.05.2017
    Veröffentlicht in International journal of solids and structures (01.05.2017)
    “… To consider contact and friction, a new node-to-node algorithm is implemented in a finite element library with a parallel framework, which allows for high performance computing …”
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    Massively Parallel Simulation of Large-Scale Electromagnetic Problems Using One High-Performance Computing Scheme and Domain Decomposition Method von Wang, Wei-Jie, Xu, Ran, Li, Han-Yu, Liu, Yang, Guo, Xing-Yue, Xu, Yong, Li, Hai-Long, Zhou, Hai-Jing, Yin, Wen-Yan

    ISSN: 0018-9375, 1558-187X
    Veröffentlicht: New York IEEE 01.10.2017
    Veröffentlicht in IEEE transactions on electromagnetic compatibility (01.10.2017)
    “… Massively parallel simulation of large-scale electromagnetic problems is performed on a supercomputer using an in-house developed high-performance computing scheme together with a domain decomposition …”
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    An adaptive semi‐implicit finite element solver for brain cancer progression modeling von Tzirakis, Konstantinos, Papanikas, Christos Panagiotis, Sakkalis, Vangelis, Tzamali, Eleftheria, Papaharilaou, Yannis, Caiazzo, Alfonso, Stylianopoulos, Triantafyllos, Vavourakis, Vasileios

    ISSN: 2040-7939, 2040-7947, 2040-7947
    Veröffentlicht: Hoboken, USA John Wiley & Sons, Inc 01.07.2023
    “… This paper presents a continuum‐based finite element framework that is built on high performance computing, open …”
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    Software concepts and numerical algorithms for a scalable adaptive parallel finite element method von Witkowski, T., Ling, S., Praetorius, S., Voigt, A.

    ISSN: 1019-7168, 1572-9044
    Veröffentlicht: New York Springer US 01.12.2015
    Veröffentlicht in Advances in computational mathematics (01.12.2015)
    “… An efficient implementation of an adaptive finite element method on distributed memory systems requires an efficient linear solver …”
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    Rapid spatio-temporal flood modelling via hydraulics-based graph neural networks von Bentivoglio, Roberto, Isufi, Elvin, Jonkman, Sebastiaan Nicolas, Taormina, Riccardo

    ISSN: 1607-7938, 1027-5606, 1607-7938
    Veröffentlicht: Katlenburg-Lindau Copernicus GmbH 30.11.2023
    Veröffentlicht in Hydrology and earth system sciences (30.11.2023)
    “… Numerical modelling is a reliable tool for flood simulations, but accurate solutions are computationally expensive …”
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    Modelling a permanent magnet synchronous motor in FEniCSx for parallel high-performance simulations von McDonagh, James, Palumbo, Nunzio, Cherukunnath, Neeraj, Dimov, Nikolay, Yousif, Nada

    ISSN: 0168-874X, 1872-6925
    Veröffentlicht: Amsterdam Elsevier B.V 01.07.2022
    Veröffentlicht in Finite elements in analysis and design (01.07.2022)
    “… , a finite element platform tailored for efficient computing and data handling at scale. The model demonstrates comparable magnetic flux density distributions …”
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    A 3D transversally isotropic constitutive model for advanced composites implemented in a high performance computing code von Quintanas-Corominas, Adrià, Maimí, Pere, Casoni, Eva, Turon, Albert, Mayugo, Joan Andreu, Guillamet, Gerard, Vázquez, Mariano

    ISSN: 0997-7538, 1873-7285
    Veröffentlicht: Berlin Elsevier Masson SAS 01.09.2018
    Veröffentlicht in European journal of mechanics, A, Solids (01.09.2018)
    “… The crack closure effect under load reversal is also considered. The model is specifically formulated to be implemented in a high-performance computing platform, Alya …”
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    High-Performance Computing Comparison of Implicit and Explicit Nonlinear Finite Element Simulations of Trabecular Bone von Sabet, Fereshteh A, Koric, Seid, Idkaidek, Ashraf, Jasiuk, Iwona

    ISSN: 0169-2607, 1872-7565, 1872-7565
    Veröffentlicht: Ireland Elsevier B.V 01.03.2021
    Veröffentlicht in Computer methods and programs in biomedicine (01.03.2021)
    “… •High-Performance Computing (HPC) is used for exceedingly computationally intensive high fidelity simulations …”
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    Anisotropic dispersion and attenuation due to wave-induced fluid flow: Quasi-static finite element modeling in poroelastic solids von Wenzlau, F., Altmann, J. B., Müller, T. M.

    ISSN: 0148-0227, 2169-9313, 2156-2202, 2169-9356
    Veröffentlicht: Washington, DC Blackwell Publishing Ltd 01.07.2010
    Veröffentlicht in Journal of Geophysical Research: Solid Earth (01.07.2010)
    “… By using finite element simulations of poroelastic relaxation, the total frequency‐dependent complex stiffness tensor can be computed for a porous …”
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    Numerical modelling of heat transfer and experimental validation in powder-bed fusion with the virtual domain approximation von Neiva, Eric, Chiumenti, Michele, Cervera, Miguel, Salsi, Emilio, Piscopo, Gabriele, Badia, Santiago, Martín, Alberto F., Chen, Zhuoer, Lee, Caroline, Davies, Christopher

    ISSN: 0168-874X, 1872-6925
    Veröffentlicht: Amsterdam Elsevier B.V 01.01.2020
    Veröffentlicht in Finite elements in analysis and design (01.01.2020)
    “… ] of deposited volume in 647 layers. For fast and automatic parameter estimation at such level of complexity, a high-performance computing framework is employed …”
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    Journal Article Verlag