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Antonio J. Gil
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2020 – today
- 2024
- [j8]Thomas B. J. Di Giusto, Chun Hean Lee, Antonio J. Gil, Javier Bonet, Clare Wood, Matteo Giacomini:
A first-order hyperbolic Arbitrary Lagrangian Eulerian conservation formulation for nonlinear solid dynamics in irreversible processes. J. Comput. Phys. 518: 113322 (2024) - 2023
- [j7]Sayed Miah, Yashwanth Sooriyakanthan, Paul D. Ledger, Antonio J. Gil, Michael Mallett:
Reduced order modelling using neural networks for predictive modelling of 3d-magneto-mechanical problems with application to magnetic resonance imaging scanners. Eng. Comput. 39(6): 4103-4127 (2023) - 2022
- [c1]Antonio J. Gil, Rogelio Ortigosa, Jesús Martínez-Frutos, Nathan Ellmer:
In-silico Design and Computational Modelling of Electroactive Polymer Based Soft Robotics. TAROS 2022: 81-91
2010 – 2019
- 2019
- [j6]Osama I. Hassan, Ataollah Ghavamian, Chun Hean Lee, Antonio J. Gil, Javier Bonet, Ferdinando Auricchio:
An upwind vertex centred finite volume algorithm for nearly and truly incompressible explicit fast solid dynamic applications: Total and Updated Lagrangian formulations. J. Comput. Phys. X 3: 100025 (2019) - 2017
- [j5]Roman Poya, Antonio J. Gil, Rogelio Ortigosa:
A high performance data parallel tensor contraction framework: Application to coupled electro-mechanics. Comput. Phys. Commun. 216: 35-52 (2017) - 2015
- [j4]Miquel Aguirre, Antonio J. Gil, Javier Bonet, Chun Hean Lee:
An upwind vertex centred Finite Volume solver for Lagrangian solid dynamics. J. Comput. Phys. 300: 387-422 (2015) - 2014
- [j3]Miquel Aguirre, Antonio J. Gil, Javier Bonet, Aurelio Arranz Carreño:
A vertex centred Finite Volume Jameson-Schmidt-Turkel (JST) algorithm for a mixed conservation formulation in solid dynamics. J. Comput. Phys. 259: 672-699 (2014) - 2013
- [j2]Antonio J. Gil, A. Arranz Carreño, Javier Bonet, Oubay Hassan:
An enhanced Immersed Structural Potential Method for fluid-structure interaction. J. Comput. Phys. 250: 178-205 (2013) - 2010
- [j1]Antonio J. Gil, A. Arranz Carreño, Javier Bonet, Oubay Hassan:
The Immersed Structural Potential Method for haemodynamic applications. J. Comput. Phys. 229(22): 8613-8641 (2010)
Coauthor Index
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