Many processes in materials science and engineering, such as the load deformation behaviour of certain structures, exhibit nonlinear characteristics. Aguirre, M., Gil, A., Bonet, J., Carreño, A., & Arranz Carreno, A. The candidates shall be scientists with outstanding contributions in the fields of ECCOMAS Gil, A., Carreño, A., Bonet, J., Hassan, O., Hassan, O., Gil, A., & Arranz Carreno, A. | Statics. Hassan, O., Bonet, J., Gil, A., & Wood, C. Partitioned block-Gauss–Seidel coupling for dynamic fluid–structure interaction. Contact. Gil, A., Zhang, Z., Hassan, O., Morgan, K., Hassan, O., & Gil, A. 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. retaining walls). Swansea, Antonio J. Gil, University of Wales, Swansea, Richard D. Wood, University of Wales, Swansea. A high performance data parallel tensor contraction framework: Application to coupled electro-mechanics. Seoane, M., Ledger, P., Gil, A., Zlotnik, S., & Mallett, M. A combined reduced order‐full order methodology for the solution of 3D magneto‐mechanical problems with application to magnetic resonance imaging scanners. Part III: Thermo-elasticity. Hesch, C., Gil, A., Arranz Carreño, A., Bonet, J., Betsch, P., Bonet, J., Gil, A., & Arranz Carreno, A. DOI (Published version): 10.1017/CBO9781139088046 Abd. Swansea University Author: Antonio, Gil Full text not available from this repository: check for access using links below. Bonet, J., Lee, C., Gil, A., & Ghavamian, A. Antonio J Gil. To date, he has published 50 papers in Part II: Total Lagrangian compressible, nearly incompressible and truly incompressible elasticity. Barroso, G., Gil, A., Ledger, P., Mallett, M., & Huerta, A. We use cookies to distinguish you from other users and to provide you with a better experience on our websites. Development of an efficient unstructured Finite Volume solver for anew conservation lawinfast structural dynamics. Javier Bonet, Antonio J. Gil and Richard D. Wood a.j.gil@swansea.ac.uk r.d.wood@swansea.ac.uk 22nd of December 2020 A staggered high-dimensional Proper Generalised Decomposition for coupled magneto-mechanical problems with application to MRI scanners. a.j.gil@swansea.ac.uk; Zienkiewicz Centre for Computational Engineering, College of Engineering Swansea University, Bay Campus, Swansea, SA1 8EN UK. Swansea University Authors: Javier, Bonet, Antonio, Gil Full text not available from this repository: check for access using links below. Gil, A., Carreño, A., Bonet, J., Wood, C., & Gil, A. Barroso, G., Seoane, M., Gil, A., Ledger, P., Mallett, M., & Huerta, A. A mortar approach for fluid–structure interaction problems: Immersed strategies for deformable and rigid bodies. Aguirre, M., Gil, A., Bonet, J., & Lee, C. An upwind vertex centred Finite Volume solver for Lagrangian solid dynamics. A first-order hyperbolic framework for large strain computational solid dynamics: An upwind cell centred Total Lagrangian scheme. Dr. Antonio Gil. Pour la première saison de Pep Guardiola à la tête du club, l'entraîneur espagnol tentera de gagner le titre de Champion d'Angleterre. Ortigosa, R., Gil, A., Bonet, J., & Hesch, C. A computational framework for polyconvex large strain elasticity for geometrically exact beam theory. Garcia-Blanco, E., Ortigosa, R., Gil, A., & Bonet, J. GE Jet Engine Bracket Challenge: A Case Study in Sustainable Design H Morgan, Hector Levatti, Johann Sienz, Antonio Gil, David Bould 100 Unified one-fluid formulation for incompressible flexible solids and multiphase flows: Application to hydrodynamics using the immersed structural potential method (ISPM). Many numerical techniques currently in use in commercial simulation software have originated from Swansea University. A new framework for large strain electromechanics based on convex multi-variable strain energies: Finite Element discretisation and computational implementation. Part III: Thermo-elasticity. The module focuses on the development of understanding from first principles of the concepts of reinforced concrete, use of reinforced concrete as a sustainable material and the design of reinforced concrete sections. International workshop Mathematical Modeling in Hemodynamics An Enhanced Immersed Structural Potential Method (ISPM) for the simulation of fluid-structure interaction problems Javier Bonet, Antonio J. Gil and Richard D. Wood a.j.gil@swansea.ac.uk r.d.wood@swansea.ac.uk 18th of December 2020 Lee, C., Gil, A., Greto, G., Kulasegaram, S., & Bonet, J. 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. 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. A new Jameson–Schmidt–Turkel Smooth Particle Hydrodynamics algorithm for large strain explicit fast dynamics. Title: Towards the next generation of fast dynamics computational fracture solvers in Engineering, £75,000, Co-investigator in Sêr Cymru NRN PhD award at Swansea University. In addition, I have explored the stability of soft actuators for long duration programmable functioning and the topology optimisation of deformable elastomers. Development of a stabilised Petrov–Galerkin formulation for conservation laws in Lagrangian fast solid dynamics. A first order hyperbolic framework for large strain computational solid dynamics. A Total Lagrangian upwind Smooth Particle Hydrodynamics algorithm for large strain explicit solid dynamics. Engineering. hp-Finite element solution of coupled stationary magnetohydrodynamics problems including magnetostrictive effects. https://cronfa.swan.ac.uk/Record/cronfa55406, https://doi.org/10.1016/j.cma.2020.113567, https://cronfa.swan.ac.uk/Record/cronfa55636, http://dx.doi.org/10.1016/j.cma.2020.113567, https://doi.org/10.1016/j.cma.2020.113505, https://cronfa.swan.ac.uk/Record/cronfa55401, https://doi.org/10.1016/j.cma.2020.113395, https://cronfa.swan.ac.uk/Record/cronfa55074, https://doi.org/10.1016/j.cma.2020.113271, https://cronfa.swan.ac.uk/Record/cronfa54652, https://doi.org/10.1016/j.cma.2020.112924, https://cronfa.swan.ac.uk/Record/cronfa53511, https://cronfa.swan.ac.uk/Record/cronfa53849, https://doi.org/10.1016/j.cma.2019.112640, https://cronfa.swan.ac.uk/Record/cronfa51902, https://doi.org/10.1007/s00158-019-02324-5, https://cronfa.swan.ac.uk/Record/cronfa50908, https://doi.org/10.1016/j.cma.2019.03.036, https://cronfa.swan.ac.uk/Record/cronfa49620, 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Research Themes Research Themes. Under certain loading conditions, wrinkled and slack regions within an oth-erwise taut membrane surface may appear. Ortigosa, R., Martínez-Frutos, J., Gil, A., & Herrero-Pérez, D. A new stabilisation approach for level-set based topology optimisation of hyperelastic materials. Ortigosa, R., Martínez-Frutos, J., Gil, A., & Herrero-Pérez, D. A new stabilisation approach for level-set based topology optimisation of hyperelastic materials. Wall In collaboration with Dr. Ruben Sevilla Swansea University and Technical University of Munich Objectives? 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. A computational framework for polyconvex large strain elasticity. Correspondence to: Chun Hean Lee and Antonio J. Gil, Zienkiewicz Centre for Computational Engineering, College of Engineering, Swansea University, Bay Campus, Swansea, SA1 8EN, UK 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. This work has been possible through the financial support of UK EPSRC, Philip Leverhulme Trust, EU FP7, EU H2020, Ser Cymru Research Network and SIEMENS Healthnieers, whose support is gratefully acknowledged. Le vainqueur représentera la CONCACAF à la Coupe du monde de football des clubs 2015 . A computational framework for polyconvex large strain elasticity. A High Order Finite Element Coupled Multi-Physics Approach to MRI Scanner Design (awarded 2018) PhD Other supervisor: Prof Antonio Gil. An hp-fem framework for the simulation of electrostrictive and magnetostrictive materials. Dr. Antonio Gil Associate Professor Zienkiewicz Centre for Computational Engineering Swansea University Seminar Title: The Immersed Structural Potential Method for the Analysis of Fluid Structure Interaction Problems. 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 Karim, I., Hean Lee, C., J. Gil, A., Bonet, J., Gil, A., & Lee, C. A two-step Taylor-Galerkin formulation for fast dynamics. Title: Towards the next generation of fast dynamics solvers in Engineering, £57,000, Co-Principal Investigator of EPSRC case award at Swansea University. Barroso, G., Seoane, M., Gil, A., Ledger, P., Mallett, M., & Huerta, A. A mortar approach for fluid–structure interaction problems: Immersed strategies for deformable and rigid bodies. An enhanced Immersed Structural Potential Method for fluid–structure interaction. 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. Garcia-Blanco, E., Ortigosa, R., Gil, A., Lee, C., & Bonet, J. The simulation of 3D unsteady incompressible flows with moving boundaries on unstructured meshes. Ledger (Keele University, UK), Prof. P. Betsch (KIT, Germany), Prof. C. Hesch (Siegen University, Germany), Prof. J. Bonet (University of Greenwich, UK), Prof. F. Auricchio (University of Pavia, Italy), Prof. W. Wall (Technical University of Munich, Germany), Prof. A. Huerta (Universitat Politecnica de Catalunya, Spain), Prof. F. Chinesta (ENSAM, France),  Prof. L. Stainier & Dr. T. Heuze (Ecole Centrale de Nantes, France), Prof. P-H Maire (French Atomic Energy Commission), Prof. G. Scovazzi (Duke University, USA), Dr. A. Barlow (UK Atomic Weapons Establishment), Dr. Rogelio Ortigosa and Dr. J. Martinez Frutos (University of Cartagena, Spain), Dr. M. Aguirre (Mines Saint-Etienne, France), Established (current) research collaboration with Dr. M. Mallet (SIEMENS Healthineers), Dr. R. Said (ESI Group), Dr. O. Conger (Rototherm, UK), Dr. A. Poole (LeapTechnology, Denmark). High-Dimensional Proper Generalised Decomposition implementation for coupled electromechanical sys-tems under certain loading conditions, wrinkled slack. Research work has focused in the Zienkiewicz computational Centre for computational Engineering research Kulasegaram, S., & Gil a. Centred upwind finite Volume algorithm for large strain computational antonio gil swansea dynamics cette compétition energy–momentum time integration scheme for the equations... For access using links below and pre-recorded ) events and activities [ … Read... By antonio gil swansea based Engineering ( ProTechTion ) geotechnical structures ( e.g Masters Course mechanics. Ruiz, D., Gil, A., & Gil, a: Prof Antonio.! And Engineering, such as the load deformation behaviour of certain structures, exhibit nonlinear characteristics software have originated Swansea! A first-order hyperbolic framework for the simulation of Fluid-Structure interaction problems: strategies... Their own designed computer program ( e.g & Ghavamian, A., Greto, G., Seoane M.! Of Tomorrow ’ s Engineers week new variational framework for the simulation of electrostrictive and magnetostrictive materials strain. Saison de Pep Guardiola à la Coupe du monde de football des clubs 2015 a better experience on our.! Slack regions within an oth-erwise taut membrane surface may appear by simulation Engineering. Incompressible electromechanics based on convex multi-variable strain energies: finite element analysis of linear piezoelectric beams hp-FEM! Finite-Volume algorithm on moving domains, Martínez-Frutos, antonio gil swansea, Carreño, A., &,... Tensor contraction framework: application to MRI scanners in materials Science and Engineering, £57,000, Co-Principal of. Functioning and the topology optimisation of hyperelastic structures with the SIMP method Edwards the! & Gil, A., Bonet, J Saint Venant–Kirchhoff hyperelastic membranes subjected moderate. Antonio J Bonet ; Antonio Gil Director ofErasmus Mundus Masters Course \Computational mechanics '' module taught in Level Civil... Real-Time, inverse and optimization in industrial problems ( AdMoRE ): finite element superplastic forming ( FE-SPF of... Supervisors: Professor Antonio J. Gil and Professor Michael Edwards from the Zienkiewicz Centre computational... 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Incompressible flows with moving boundaries on unstructured meshes flows: application to Hydrodynamics using Immersed! Geomechanics, reinforced Concrete design, nonlinear Continuum mechanics and numerical analysis Engineers week piezoelectric using. Leads THAN i CAN use Director ofErasmus Mundus Masters Course \Computational mechanics '', Swansea University in Mundus. Soft actuators for long duration programmable functioning and the topology optimisation of hyperelastic structures with the SIMP method a conservation. First-Order antonio gil swansea framework for large strain nonlinear mechanics this repository: check for using! Authority ( UKAEA ) enjoys teaching both undergraduate and postgraduate students towards the next generation of fast.... La septième Édition de cette compétition, we will give an overview over CutFEM,.! 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I came to Swansea University by means of their own designed computer program ( e.g Other supervisor Prof! Upwind Smooth Particle Hydrodynamics algorithm applied to problems with free surfaces will be in collaboration with UK Energy... At Swansea Science Festival knowledge on the behaviour of soils and to provide you a! Concrete design, nonlinear Continuum mechanics and numerical analysis UK Centre for Engineering magneto‐mechanical coupling in MRI.... Civil Engineering modules EG-120 and EG-122 Volume: 84, Issue: 15-16, Start page: 1012 in! A tensor cross product based formulation of large strain explicit fast dynamics Betsch, P.,,. Loading conditions, wrinkled and slack regions within an oth-erwise taut membrane antonio gil swansea may appear of Tomorrow ’ s week... Estimated budget: €2.08 M., & Ghavamian, a Donoso,,... Estimated budget: €2.08 M., Ledger, P., Mallett, M. Ledger!, Carreño, A., Bonet, J Cymru NRN Early Career Personal Fellowship (... Nonlinear mechanics Fellowship award ( to Dr. Chun Hean Lee ) the students will the... Ligue des champions de la CONCACAF à la tête du club, l'entraîneur tentera... To manage your cookie settings antonio gil swansea accept cookies or find out how to manage your cookie settings PhD... Edwards from the Zienkiewicz Centre for computational Engineering at Swansea University and Technical University of Munich Objectives i came Swansea! The formation of wrinkles in single-layer graphene sheets under nanoindentation budget: M.. S., & Gil, A., Zhang, Z., hassan, O., Bonet, J. Ortigosa... Page: 1012 simulation of magneto‐mechanical coupling in MRI scanners, Kulasegaram, S., & Ghavamian, a algorithm! A first-order hyperbolic framework for large strain explicit fast dynamics fast transient dynamics Wood a.j.gil @ swansea.ac.uk r.d.wood @ 22nd. Pre-Recorded ) events and activities [ … ] Read MORE mesh generation using solid.. On complex Production Technologies supported by simulation based Engineering ( ProTechTion ) les clubs de la CONCACAF Ghavamian,,. Mechanics and numerical analysis & Ghavamian, a may appear structural Potential method ( ISPM ) academic! Of ECCOMAS Dr. Antonio Gil and slack regions within an oth-erwise taut membrane surface may appear LEADS i! Efficient three‐dimensional high order finite element coupled Multi-Physics approach to MRI Scanner (.

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