Minisimposium
Monday, 11 June 2018 11:00 - 13:00 Recent advances in immersed boundary and fictitious domain methods I Minisymposium organized by Ernst Rank, Alexander Düster, Jamshid Parvizian, Fehmi Cirak, John E. Dolbow, Thomas-Peter Fries, Isaac Harari, Mats G. Larson, Isabelle Ramiere, Martin Ruess and Dominik Schillinger |
MS25A Room: Lomond Auditorium Chair: Alexander Düster CoChair: Ernst Rank |
A cute finite element method with boundary value correction for modelling Kirchhoff plates
High-order fictitious domain methods for thin structures
Development of methods for weak imposition of Dirichlet boundary conditions for fictitious finite element analysis
A new class of generalized finite element spaces for problems with immersed boundaries
Scalable iterative solvers for immersed finite element methods
Large-scale simulations with unfitted finite element techniques
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Monday, 11 June 2018 16:30 - 18:30 Recent advances in immersed boundary and fictitious domain methods II Minisymposium organized by Ernst Rank, Alexander Düster, Jamshid Parvizian, Fehmi Cirak, John E. Dolbow, Thomas-Peter Fries, Isaac Harari, Mats G. Larson, Isabelle Ramiere, Martin Ruess and Dominik Schillinger |
MS25B Room: Lomond Auditorium Chair: Thomas-Peter Fries CoChair: Alexander Düster |
Computational modelling of metal additive manufacturing
A stabilised fictitious domain method for Signorini-Stefan problems for laser cutting
Parallelized simulations of tunnel advancement using the finite cell method
Cut-cell methods and their application in biomedical source analysis
Embedded boundary methods for flow in complex geometries
Skeleton-stabilized immersed isogeometric analysis for incompressible flow problems
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Tuesday, 12 June 2018 11:00 - 13:00 Recent advances in immersed boundary and fictitious domain methods III Minisymposium organized by Ernst Rank, Alexander Düster, Jamshid Parvizian, Fehmi Cirak, John E. Dolbow, Thomas-Peter Fries, Isaac Harari, Mats G. Larson, Isabelle Ramiere, Martin Ruess and Dominik Schillinger |
MS25C Room: Lomond Auditorium Chair: Dominik Schillinger CoChair: Ernst Rank |
A fictitious domain method with higher-order accurate integration in cut elements.
A higher-order conformal decomposition FEM for NURBS-based geometries
Direct Simulation of ‘dirty’ geometries using the Finite Cell Method
Finite Cell discretizations for Full Waveform Inversion
Coupling matrix for boundary cells of a Cartesian grid method using a transfer-matrix method
An immersed boundary technique with strong enforcement of essential boundary conditions
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Tuesday, 12 June 2018 14:00 - 16:00 Recent advances in immersed boundary and fictitious domain methods IV Minisymposium organized by Ernst Rank, Alexander Düster, Jamshid Parvizian, Fehmi Cirak, John E. Dolbow, Thomas-Peter Fries, Isaac Harari, Mats G. Larson, Isabelle Ramiere, Martin Ruess and Dominik Schillinger |
MS25D Room: Lomond Auditorium Chair: Ernst Rank CoChair: Alexander Düster |
Numerical modeling of an in-vessel flow limiter using an Immersed Boundary approach
A cut finite element method for two-phase viscoelastic flows
A high-order extended discontinuous Galerkin method to treat hydrodynamics problems
Large eddy simulation of flow past a bluff body using immersed boundary method
A fictitious domain approach to the fluid-structure interaction problem with compressible solids
An immersed boundary method with divergence-free interpolation for unstructured polyhedral grids
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Tuesday, 12 June 2018 16:30 - 18:30 Recent advances in immersed boundary and fictitious domain methods V Minisymposium organized by Ernst Rank, Alexander Düster, Jamshid Parvizian, Fehmi Cirak, John E. Dolbow, Thomas-Peter Fries, Isaac Harari, Mats G. Larson, Isabelle Ramiere, Martin Ruess and Dominik Schillinger |
MS25E Room: Lomond Auditorium Chair: Peter Hansbo CoChair: Ernst Rank |
Embedded shell finite elements: Solid-shell interaction, surface locking and integration into seamless imaging-through-analysis workflows
Immersed B-spline finite elements for parametric solids
Structural optimization using CutFEM
Shape sensitivity analysis in the Cartesian grid finite element method (cgFEM)
Accurate discretization of diffusion in the LS-STAG cut-cell method using diamond cell techniques
Extension of the LS-STAG method for simulating two-phase non-Newtonian fluid-air flows
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Wednesday, 13 June 2018 08:30 - 10:30 Recent advances in immersed boundary and fictitious domain methods VI Minisymposium organized by Ernst Rank, Alexander Düster, Jamshid Parvizian, Fehmi Cirak, John E. Dolbow, Thomas-Peter Fries, Isaac Harari, Mats G. Larson, Isabelle Ramiere, Martin Ruess and Dominik Schillinger |
MS25F Room: Lomond Auditorium Chair: Mats Larson CoChair: Alexander Düster |
Adaptive mesh refinement approaches for first order non-fitted boundary conditions methods
A mixed extended finite element formulation for the simulation of cracks and heterogeneities in nearly incompressible materials
Applying algebraic multigrid methods to dynamic, enriched, conformal decomposition finite element methods for multi-material transport
Dual weighted residual error estimation for the Finite Cell Method
Cut isogeometric methods with Basis removal
Immersed boundary penalty method for compressible flows over moving obstacles
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Wednesday, 13 June 2018 11:00 - 13:00 Recent advances in immersed boundary and fictitious domain methods VII Minisymposium organized by Ernst Rank, Alexander Düster, Jamshid Parvizian, Fehmi Cirak, John E. Dolbow, Thomas-Peter Fries, Isaac Harari, Mats G. Larson, Isabelle Ramiere, Martin Ruess and Dominik Schillinger |
MS25G Room: Lomond Auditorium Chair: Isabelle Ramiere CoChair: Ernst Rank |
Image-based structural analysis of micro-structured materials applying the finite cell method
Numerical integration in scan-based immersogeometric analysis
Structural simulation of metal foams from CT scans using machine learning techniques in the cgFEM framework
Stabilization method for contact problems under the Cartesian Grid-based Finite Element method framework
Efficient optimal control of contact problems using the finite cell method
Recovery of the frictionless contact stress field in the Cartesian grid finite element method (cgFEM)
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