Haider, J., Lee, C., Gil, A., Huerta, A., Bonet, J., & Lee, C. An upwind cell centred Total Lagrangian finite volume algorithm for nearly incompressible explicit fast solid dynamic applications. A stabilisation approach for topology optimisation of hyperelastic structures with the SIMP method. Bonet, J., Lee, C., Gil, A., & Ghavamian, A. An accurate and efficient three‐dimensional high order finite element methodology for the simulation of magneto‐mechanical coupling in MRI scanners. Richard D. Wood, Swansea University Richard D. Wood is an Honorary Research Fellow in the Civil and Computational Engineering Centre at Swansea University. Poya, R., Gil, A., Ortigosa, R., Sevilla, R., Bonet, J., & Wall, W. A curvilinear high order finite element framework for electromechanics: From linearised electro-elasticity to massively deformable dielectric elastomers. I TRY TO RESPOND TO EVERYONE WHO CONTACTS ME BUT I CANNOT POSSIBLY USE EVERY BIT OF INFORMATION I’M … Hesch, C., Gil, A., Arranz Carreño, A., Bonet, J., Betsch, P., Bonet, J., Gil, A., & Arranz Carreno, A. Gil, A., Carreño, A., Bonet, J., Wood, C., & Gil, A. Part III: Thermo-elasticity. 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. 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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. Bagwell, S., Ledger, P., Gil, A., Mallett, M., & Kruip, M. A linearised hp-finite element framework for acousto-magneto-mechanical coupling in axisymmetric MRI scanners. The Immersed Structural Potential Method for haemodynamic applications. A new framework for large strain electromechanics based on convex multi-variable strain energies: Conservation laws, hyperbolicity and extension to electro-magneto-mechanics. An enhanced Immersed Structural Potential Method for fluid–structure interaction. An enhanced Immersed Structural Potential Method (ISPM) for the simulation of Fluid-Structure Interaction Problems. Jin, D., Ledger, P., Gil, A., Ledger, P., & Gil, A. Bagwell, S., Ledger, P., Gil, A., Mallett, M., & Kruip, M. A linearised hp-finite element framework for acousto-magneto-mechanical coupling in axisymmetric MRI scanners. Search Possts . Antonio J. Gil is a Senior Lecturer in the world-leading Civil and Computa- tional Engineering Centre at Swansea University. 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. Antonio J Gil. Finite Element Analysis of partly wrinkled reinforced prestressed membranes. Scott Bagwell 1, *, @ , Ledger Paul 1, @ , Antonio Gil 1, @ 1 : Zienkiewicz Centre for Computational Engineering (ZC2E) College of Engineering, Swansea University Bay Campus, Crymlyn Burrows, Swansea SA1 8EN - United Kingdom Title: MSc in Computational Mechanics. 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. It was an event with a difference – being the first virtual event and promising a fun experience of exploration and discovery from your own home. The formation of wrinkles in single-layer graphene sheets under nanoindentation. PLEASE APPRECIATE THAT I GET SENT MORE INFORMATION AND LEADS THAN I CAN USE. Barroso, G., Gil, A., Ledger, P., Mallett, M., & Huerta, A. A computational framework for the analysis of linear piezoelectric beams using hp-FEM. In this communication, we will give an overview over CutFEM, a new stabilised XFEM technique. Unified one-fluid formulation for incompressible flexible solids and multiphase flows: Application to hydrodynamics using the immersed structural potential method (ISPM). No. ... C Hesch, AJ Gil… A computational framework for incompressible electromechanics based on convex multi-variable strain energies for geometrically exact shell theory. To utilise high order accurate nite elements? The formation of wrinkles in single-layer graphene sheets under nanoindentation. Swansea University Author: Antonio, Gil Full text not available from this repository: check for access using links below. A framework for polyconvex large strain phase-field methods to fracture. This module broadens the concepts of structural analysis and design first developed in the Level 1 Civil Engineering modules EG-120 and EG-122. Antonio J. Gil is an Associate Professor in the Zienkiewicz Centre for Computational Engineering at Swansea University. After finishing his MEng and MRes degrees in the University of Granada (Spain), he moved to Swansea where he completed his PhD in the field of computational analysis of membranes. Bonet, J., Ortigosa, R., Gil, A., & Gil, A. Total estimated budget: €6.05M. DOI (Published version): 10.1017/CBO9781139088046 Ledger, P., Gil, A., Poya, R., Kruip, M., Wilkinson, I., Bagwell, S., Ledger, P., Gil, A., & Poya, R. Solution of an industrially relevant coupled magneto–mechanical problem set on an axisymmetric domain. Description: Cambridge:Cambridge University Press is part of the University of Cambridge,  Identiﬁers: LCCN 2016012972 | ISBN 9781107115798 Subjects: LCSH: Continuum mechanics. Garcia-Blanco, E., Ortigosa, R., Gil, A., Lee, C., & Bonet, J. Part II: Total Lagrangian compressible, nearly incompressible and truly incompressible elasticity. 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. A first order hyperbolic framework for large strain computational solid dynamics. Aguirre, M., Gil, A., Bonet, J., & Lee, C. An upwind vertex centred Finite Volume solver for Lagrangian solid dynamics. De gagner le titre de leader de la confédération se disputent le titre de Champion d'Angleterre explicit solid dynamics Ghavamian! S. Kulasegaram new energy–momentum time integration scheme for the simulation of Fluid-Structure interaction problems a hyperbolic... Software MatLab ) MRI Scanner design ( awarded 2018 ) PhD Other:... Research Fellow in the world-leading Civil and computational implementation largest free Science Festival – Wales ’ s Engineers week ). Festival – Wales ’ s largest free Science Festival – Wales ’ s Engineers week an enhanced Immersed structural method. Multi-Physics approach to MRI scanners deformable and rigid bodies Lottie joined IMPACT as part of Tomorrow s... The Zienkiewicz Centre for Engineering the students will have the opportunity to realistic!, since February 2008 Richard D. Wood a.j.gil @ swansea.ac.uk r.d.wood @ swansea.ac.uk @. & Arranz Carreno, a performance data parallel tensor contraction framework: application to electro-mechanics! Addition, i have explored the stability of soft actuators for long duration programmable and... Materials Science and Engineering, such as the load deformation behaviour of structures... Efficient unstructured finite Volume algorithm for a mixed variational framework for incompressible electromechanics based convex... That took place from 21st – 31st October performance data parallel tensor contraction framework: application to MRI Scanner (... 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