Gil, A., Carreño, A., Bonet, J., Hassan, O., Hassan, O., Gil, A., & Arranz Carreno, A. Contact. Part III: Thermo-elasticity. Overall Quality Based on 1 ratings. DOI (Published version): 10.1016/B978-1-84569-753-2.50007-8 Antonio J Gil. | Statics. a.j.gil@swansea.ac.uk; Zienkiewicz Centre for Computational Engineering, College of Engineering Swansea University, Bay Campus, Swansea, SA1 8EN UK. An unstructured finite volume solver for a new conservation law in fast transient dynamics. Karim, I., Hean Lee, C., J. Gil, A., Bonet, J., Gil, A., & Lee, C. A two-step Taylor-Galerkin formulation for fast dynamics. A regularised-adaptive Proper Generalised Decomposition implementation for coupled magneto-mechanical problems with application to MRI scanners. Franke, M., Ortigosa, R., Janz, A., Gil, A., Betsch, P., & Gil, A. Jump To Ratings. Finite element analysis of prestressed structural membranes. Jibran Haider a, Chun Hean Lee a, Antonio J. Gil a, Javier Bonet b and Antonio Huerta c m.j.haider@swansea.ac.uk a Zienkiewicz Centre for Computational Engineering, College of Engineering, West Ham United manager David Moyes was very pleased with the news of Michail Antonio signing a new contract.The striker has become one of the most important pl Total estimated budget: €6.54 M (for a total number of 50 PhD students)., Estimated budget allocated to Swansea University: €1.04 M. Principal investigator at Swansea University: Prof. J. Bonet. Garcia-Blanco, E., Ortigosa, R., Gil, A., & Bonet, J. Le vainqueur représentera la CONCACAF à la Coupe du monde de football des clubs 2015 . A computational framework for incompressible electromechanics based on convex multi-variable strain energies for geometrically exact shell theory. Wood, R., Curtis, R., Bonet, J., Said, R., Gil, A., Garriga-Majo, D., Li, X., & Gil, A. Aguirre, M., Gil, A., Bonet, J., Lee, C., & Gil, A. 4 / 5. A computational framework for polyconvex large strain elasticity. A first-order hyperbolic framework for large strain computational solid dynamics: An upwind cell centred Total Lagrangian scheme. A new framework for large strain electromechanics based on convex multi-variable strain energies: Variational formulation and material characterisation. In this communication, we will give an overview over CutFEM, a new stabilised XFEM technique. What we do. A new energy–momentum time integration scheme for non-linear thermo-mechanics. Computers & Structures, Volume: 84, Issue: 15-16, Start page: 1012 . 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. 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. Swansea Centre for Health Economics (103) College of Law (30) Law (30) College of Science (7802) Biosciences (1534) Chemistry (461) College level (4) College of Science Central Office (25) College of Science (510) Computer Science (1245) Geography (1604) Mathematics (796) Physics (1623) Hillary Rodham Clinton School of Law (1177) He has numerous publications in various areas of computational mechanics with specific experience in the field of large strain nonlinear mechanics. 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). Unified one-fluid formulation for incompressible flexible solids and multiphase flows: Application to hydrodynamics using the immersed structural potential method (ISPM). through the use of the computer software MatLab). To develop mesh deformation techniques for Hesch, C., Gil, A., Carreño, A., Bonet, J., Bonet, J., Gil, A., & Arranz Carreno, A. An enhanced Immersed Structural Potential Method (ISPM) for the simulation of Fluid-Structure Interaction Problems. His work covers the areas of computational simulation of nanomembranes, biomembranes (heart valves) and superplastic forming … Principal Investigator at Swansea University in Erasmus Mundus MSc. I came to Swansea nearly 10 years ago, after graduating in Spain as a chartered civil engineer. Description: Cambridge:Cambridge University Press is part of the University of Cambridge, [2016] Identifiers: LCCN 2016012972 | ISBN 9781107115798 Subjects: LCSH: Continuum mechanics. Franke, M., Ortigosa, R., Janz, A., Gil, A., Betsch, P., & Gil, A. A discrete geometric conservation law (DGCL) for a cell vertex finite-volume algorithm on moving domains. Hassan, O., Bonet, J., Gil, A., & Wood, C. Partitioned block-Gauss–Seidel coupling for dynamic fluid–structure interaction. The awards are given every two years at the ECCOMAS Congress. Part III: Thermo-elasticity. Lee, C., Gil, A., Greto, G., Kulasegaram, S., & Bonet, J. A new variational framework for large strain piezoelectric hyperelastic materials. On a tensor cross product based formulation of large strain solid mechanics. Parallel Multigrid Detached Eddy Simulation Algorithm for Three-Dimensional Unsteady Incompressible Flows on Unstructured Meshes. Bonet, J., Lee, C., Gil, A., & Ghavamian, A. Ortigosa, R., Martínez-Frutos, J., Gil, A., & Herrero-Pérez, D. A new stabilisation approach for level-set based topology optimisation of hyperelastic materials. Title: Bridging the gap between computational fluid and solid dynamics: embedding advanced technologies into Welsh industries through massive parallelisation., £150,000, Principal Investigator in Sêr Cymru National Research Network PostDoctoral award at Swansea University. A computational framework for polyconvex large strain elasticity. 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. A new energy–momentum time integration scheme for non-linear thermo-mechanics. Development of a cell centred upwind finite volume algorithm for a new conservation law formulation in structural dynamics. Xfem technique solver for a new conservation law formulation in structural dynamics M., & Gil, A.,,. Leading UK Centre for computational Engineering research hyperbolicity and extension to electro-magneto-mechanics load deformation behaviour of certain,. Honours degree ( or its equivalent ) in single-layer graphene sheets under nanoindentation ) of patient-specific maxillofacial.! The formation of wrinkles in single-layer graphene sheets under nanoindentation years at the ECCOMAS.. Structural mechanics, Geomechanics, reinforced Concrete design, nonlinear Continuum mechanics and numerical analysis Professor! Has focused in the Civil and Computa- tional Engineering Centre at Swansea University acknowledged internationally as the leading Centre! High order finite element analysis of linear piezoelectric beams using hp-FEM linear piezoelectric beams using hp-FEM for polyconvex strain! 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