Ortigosa, R., Martínez-Frutos, J., Gil, A., & Herrero-Pérez, D. A new stabilisation approach for level-set based topology optimisation of hyperelastic materials. A high-order stabilised ALE finite element formulation for the Euler equations on deformable domains. Ortigosa, R., Ruiz, D., Gil, A., Donoso, A., & Bellido, J. Curtis, R., Majo, D., Soo, S., Disilvio, L., Gil, A., Wood, R., Atwood, R., Said, R., & Gil, A. A high-order stabilised ALE finite element formulation for the Euler equations on deformable domains. (Swansea University) Gil. | Finite element method. Lee, C., Gil, A., Ghavamian, A., & Bonet, J. Garcia-Blanco, E., Ortigosa, R., Gil, A., & Bonet, J. Osama I. Hassan, Ataollah Ghavamian, Chun Hean Lee, Antonio J. Gil, Javier Bonet and Ferdinando Auricchio, An upwind vertex centred finite volume algorithm for nearly and truly incompressible explicit fast solid dynamic applications: Total and Updated Lagrangian formulations, Journal of Computational Physics: X, 10.1016/j.jcpx.2019.100025, (100025), (2019). Prof. Antonio J. Gil graduated as Ingeniero de Caminos, Canales y Puertos from the University of Granada (Spain) in June 1999 (ranked 1st nationally) after having spent one academic year (1998-1999) in the University of California Davis fully funded by a prestigious California scholarship programme. Franke, M., Ortigosa, R., Janz, A., Gil, A., Betsch, P., & Gil, A. Poya, R., Gil, A., Ortigosa, R., & Palma, R. On a family of numerical models for couple stress based flexoelectricity for continua and beams. Gil, A., Lee, C., Bonet, J., & Ortigosa, R. A first order hyperbolic framework for large strain computational solid dynamics. The demonstration was part of the Swansea Science Festival that took place from 21st – 31st October. Gil, A., Carreño, A., Bonet, J., Wood, C., & Gil, A. Host academic in Sêr Cymru NRN Early Career Personal Fellowship award (to Dr. Chun Hean Lee). Barroso, G., Gil, A., Ledger, P., Mallett, M., & Huerta, A. Swansea University Author: Antonio, Gil Full text not available from this repository: check for access using links below. A high performance data parallel tensor contraction framework: Application to coupled electro-mechanics. Part II: Total Lagrangian compressible, nearly incompressible and truly incompressible elasticity. Title: Towards the next generation of fast dynamics solvers in Engineering, £57,000, Co-Principal Investigator of EPSRC case award at Swansea University. Bagwell, S., Ledger, P., Gil, A., & Mallett, M. Transient solutions to nonlinear acousto-magneto-mechanical coupling for axisymmetric MRI scanner design. A framework for polyconvex large strain phase-field methods to fracture. This year IMPACT took part in the Swansea Science Festival – Wales’s largest free science festival. Development of a stabilised Petrov–Galerkin formulation for conservation laws in Lagrangian fast solid dynamics. Static and dynamic global stiffness analysis for automotive pre-design, A new computational tool for multi-material solid dynamics, A Computational Framework for a first-order system of conservation laws in thermoelasticity, Towards MRI scanner design: the Proper Generalised Decomposition method in the context of coupled magneto-mechanical problems, 3D simulation of magneto-mechanical coupling in MRI scanners using high order FEM and POD. A parameter-free Total Lagrangian Smooth Particle Hydrodynamics algorithm applied to problems with free surfaces. Item Description: @article gil2013,title = A new variational framework for large strain piezoelectric hyperelastic materials,journal = Computational Methods for Coupled Problems in Science and Engineering V - A Conference Celebrating the 60th Birthday of Eugenio Onate, COUPLED PROBLEMS 2013,year = 2013,pages = 503-514,author = Bonet, J. and Ortigosa, R. and Gil, A.J. Full Professor at Swansea University. The awards are given every two years at the ECCOMAS Congress. Professor in the Engineering department at Swansea … 4 / 5. Tag: Marco Antonio Gil-Cervantes ‘Do you know where your child is tonight?’ On 06/01/2020 09/01/2020 By Jac In Cardiff, Swansea, Third Sector, Welsh Government, Welsh Labour 61 Comments. He has numerous publications in various areas of computational mechanics with specific experience in the field of large strain nonlinear mechanics. Dr. Antonio J. Gil Civil and Computational Engineering Centre School of Engineering, Swansea University Swansea, SA2 8PP, UK e-mail: a.j.gil@swansea.ac.uk Tension membrane structures are currently used in many difierent Civil Engineering flelds. Swansea University Author: Antonio, Gil Hesch, C., Gil, A., Ortigosa, R., Dittmann, M., Bilgen, C., Betsch, P., Franke, M., Janz, A., Weinberg, K., & Gil, A. Part III: Thermo-elasticity. Antonio Gil is a professor in the Engineering department at Swansea University - see what their students are saying about them or leave a rating yourself. Follow. On continuum immersed strategies for Fluid–Structure Interaction. Low, K., Lee, C., Gil, A., Haider, J., & Bonet, J. Ortigosa, R., Franke, M., Janz, A., Gil, A., Betsch, P., Gil, A., & Martinez, R. An energy–momentum time integration scheme based on a convex multi-variable framework for non-linear electro-elastodynamics. Development of a cell centred upwind finite volume algorithm for a new conservation law formulation in structural dynamics. Development of a stabilised Petrov–Galerkin formulation for conservation laws in Lagrangian fast solid dynamics. A discrete geometric conservation law (DGCL) for a cell vertex finite-volume algorithm on moving domains. Search Possts . Antonio is a Chartered Civil Engineer and Professor in the College of Engineering at Swansea University. Subject to statutory exception and to the provisions of relevant collective licensing agreements, no reproduction of any part may take place without the written permission of … Wood, R., Curtis, R., Bonet, J., Said, R., Gil, A., Garriga-Majo, D., Li, X., & Gil, A. Bonet, J., Ortigosa, R., Gil, A., & Gil, A. Seoane, M., Ledger, P., Gil, A., Mallett, M., Ledger, P., & Gil, A. Having been awarded the National 1st Prize by the Spanish Ministry of Education in 2000, he has since received a number of further research prizes both as Principal Investigator and PhD supervisor, including the prestigious UK Philip Leverhulme Prize in 2011 and the ECCOMAS 2016 Olgierd Cecil Zienkiewicz award for his contributions as a young investigator in the field of computational mechanics. Computers & Structures, Volume: 84, Issue: 15-16, Start page: 1012 . Antonio Gil is a professor in the Engineering department at Swansea University - see what their students are saying about them or leave a rating yourself. A computational framework for incompressible electromechanics based on convex multi-variable strain energies for geometrically exact shell theory. Bonet, J., Lee, C., Gil, A., & Ghavamian, A. A vertex centred Finite Volume Jameson–Schmidt–Turkel (JST) algorithm for a mixed conservation formulation in solid dynamics. Richard D. Wood, Swansea University Richard D. Wood is an Honorary Research Fellow in the Civil and Computational Engineering Centre at Swansea University. Dr. Antonio Gil. International workshop Mathematical Modeling in Hemodynamics An Enhanced Immersed Structural Potential Method (ISPM) for the simulation of fluid-structure interaction problems Lee, C., Gil, A., Hassan, O., Bonet, J., & Kulasegaram, S. A variationally consistent Streamline Upwind Petrov–Galerkin Smooth Particle Hydrodynamics algorithm for large strain solid dynamics. A new computational framework for electro-activation in cardiac mechanics. Finite element analysis of prestressed structural membranes. To develop mesh deformation techniques for Finite Element Analysis of partly wrinkled reinforced prestressed membranes. A first-order hyperbolic framework for large strain computational solid dynamics: An upwind cell centred Total Lagrangian scheme. Hassan, O., Ghavamian, A., Lee, C., Gil, A., Bonet, J., & Auricchio, F. An upwind vertex centred finite volume algorithm for nearly and truly incompressible explicit fast solid dynamic applications: Total and Updated Lagrangian formulations. Development of an efficient unstructured Finite Volume solver for anew conservation lawinfast structural dynamics. The theories of lateral earth pressure (Mohr-Coulomb and Rankine) will be explained in detail as well as their implications into the design of earth retaining structures and the stability of slopes. A new energy–momentum time integration scheme for non-linear thermo-mechanics. Title: MSc in Computational Mechanics. Development of an efficient unstructured Finite Volume solver for anew conservation lawinfast structural dynamics. Towards an efficient computational strategy for electro-activation in cardiac mechanics. Prof. Antonio J. Gil graduated as Ingeniero de Caminos, Canales y Puertos from the University of Granada (Spain) in June 1999 (ranked 1st nationally) after having spent one academic year (1998-1999) in the University of California Davis fully funded by a prestigious California scholarship programme. This module builds upon the "Basic Soil Mechanics" module taught in Level 2 Civil Engineering. ATIP is a £6M Programme Grant led by SPECIFIC and Swansea University, in close collaboration with Imperial College London and Oxford University, funded by EPSRC College of Engineering Researchers The Immersed Structural Potential Method for haemodynamic applications. Antonio J. Gil Swansea University. Students will learn to carry out the full detailed design of typical reinforced concrete structural elements, including beams, slabs, and columns and by the end of the course will be capable of analysing and designing a simple reinforced concrete frame structure according to Eurocode 2. In 2019, I was awarded the Swansea University Teaching Excellence Award for the quality of my teaching in subjects within the degree of Civil Engineering. Advisors: Dr. Antonio Gil and Prof. Dr.-Ing. Abd. Bonet, J., Gil, A., Lee, C., Aguirre, M., Ortigosa, R., & Lee, C. A first order hyperbolic framework for large strain computational solid dynamics. Gil, A., Carreño, A., Bonet, J., Hassan, O., Bonet, J., Hassan, O., Gil, A., & Arranz Carreno, A. Nonlinear Solid Mechanics for Finite Element Analysis: Statics A new framework for large strain electromechanics based on convex multi-variable strain energies: Finite Element discretisation and computational implementation. A first order hyperbolic framework for large strain computational solid dynamics. Title: Simulation-based Engineering and Entrepreneurship Development (SEED). Gil, A., Lee, C., Bonet, J., & Aguirre, M. A stabilised Petrov–Galerkin formulation for linear tetrahedral elements in compressible, nearly incompressible and truly incompressible fast dynamics. The two ECCOMAS Awards for young scientists are the Olgierd Cecil Zienkiewicz Award in the field of Computational Engineering Sciences, and the Jacques Louis Lions Award in the field of Computational Mathematics. Marín, F., Martínez-Frutos, J., Ortigosa, R., Gil, A., & Marin, F. A Convex Multi-Variable based computational framework for multilayered electro-active polymers. The Zienkiewicz Centre for Computational Engineering is acknowledged internationally as the leading UK centre for computational engineering research. Swansea University Author: Antonio, Gil Full text not available from this repository: check for access using links below. We use cookies to distinguish you from other users and to provide you with a better experience on our websites. A stabilisation approach for topology optimisation of hyperelastic structures with the SIMP method. Close this message to accept cookies or find out how to manage your cookie settings. Finite Element Analysis of partly wrinkled reinforced prestressed membranes. Total estimated budget: €2.08 M., Estimated budget allocated to Swansea University: €273.3K. A new Jameson–Schmidt–Turkel Smooth Particle Hydrodynamics algorithm for large strain explicit fast dynamics. Log into Facebook to start sharing and connecting with your friends, family, and people you know. Hassan, O., Bonet, J., Gil, A., & Wood, C. Partitioned block-Gauss–Seidel coupling for dynamic fluid–structure interaction. Current position - Full Professor in the College of Engineering, Swansea University, U.K. - Chartered Civil Engineer in the Spanish Institution for Civil Engineers, since October 1999. A stabilisation approach for topology optimisation of hyperelastic structures with the SIMP method. Antonio GIL, Professor (Full) of Swansea University, Swansea (SWAN) | Read 125 publications | Contact Antonio GIL Carpenter, Ruby Nell … 1138342. Specifically, I have tught courses on Structural Mechanics, Geomechanics, Reinforced Concrete Design, Nonlinear Continuum Mechanics and Numerical Analysis. Finite element superplastic forming (FE-SPF) of patient-specific maxillofacial prostheses. Research Themes Research Themes. Antonio Gil. Antonio J. Gil is an Associate Professor in the Zienkiewicz Centre for Computational Engineering at Swansea University. What we do. Le vainqueur représentera la CONCACAF à la Coupe du monde de football des clubs 2015 . Computational solid dynamics award ( to Dr. Chun Hean Lee ) loading,. Fields of ECCOMAS Dr. Antonio Gil Fellowship award ( to Dr. Chun Hean Lee.! ( ProTechTion ) conditions, wrinkled and slack regions within an oth-erwise membrane... And optimization in industrial problems ( AdMoRE ) joined IMPACT as part of Tomorrow ’ s week! 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