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The finite cell method: a review in the context of higher-order structural analysis of CAD and image-based geometric models
The finite cell method is an embedded domain method, which combines the fictitious domain
approach with higher-order finite elements, adaptive integration, and weak enforcement of …
approach with higher-order finite elements, adaptive integration, and weak enforcement of …
Deforming fluid domains within the finite element method: five mesh-based tracking methods in comparison
S Elgeti, H Sauerland - Archives of Computational Methods in …, 2016 - Springer
Fluid flow applications can involve a number of coupled problems. One is the simulation of
free-surface flows, which require the solution of a free-boundary problem. Within this …
free-surface flows, which require the solution of a free-boundary problem. Within this …
Levelset based fluid topology optimization using the extended finite element method
S Kreissl, K Maute - Structural and Multidisciplinary Optimization, 2012 - Springer
This study focuses on finding the optimal layout of fluidic devices subjected to
incompressible flow at low Reynolds numbers. The proposed approach uses a levelset …
incompressible flow at low Reynolds numbers. The proposed approach uses a levelset …
Linking ghost penalty and aggregated unfitted methods
In this work, we analyse the links between ghost penalty stabilisation and aggregation-
based discrete extension operators for the numerical approximation of elliptic partial …
based discrete extension operators for the numerical approximation of elliptic partial …
The stable XFEM for two-phase flows
H Sauerland, TP Fries - Computers & Fluids, 2013 - Elsevier
The extended finite element method (XFEM) is frequently used in order to incorporate
discontinuous solution properties into the approximation space. Discontinuities inside …
discontinuous solution properties into the approximation space. Discontinuities inside …
A positivity preserving and conservative variational scheme for phase-field modeling of two-phase flows
We present a positivity preserving variational scheme for the phase-field modeling of
incompressible two-phase flows with high density ratio. The variational finite element …
incompressible two-phase flows with high density ratio. The variational finite element …
A new face-oriented stabilized XFEM approach for 2D and 3D incompressible Navier–Stokes equations
We develop a new stabilized XFEM based fixed-grid approach for the transient
incompressible Navier–Stokes equations using cut elements. Our framework is based on a …
incompressible Navier–Stokes equations using cut elements. Our framework is based on a …
Inf-sup stability of geometrically unfitted Stokes finite elements
This paper shows an inf-sup stability property for several well-known 2D and 3D Stokes
elements on triangulations which are not fitted to a given smooth or polygonal domain. The …
elements on triangulations which are not fitted to a given smooth or polygonal domain. The …
[HTML][HTML] A stable generalized finite element method (SGFEM) of degree two for interface problems
Q Zhang, I Babuška - Computer Methods in Applied Mechanics and …, 2020 - Elsevier
Abstract Generalized or Extended Finite Element Methods (GFEM/XFEM) of degree 1 for
interface problems have been reported in the literature; they (i) yield optimal order of …
interface problems have been reported in the literature; they (i) yield optimal order of …
A face‐oriented stabilized Nitsche‐type extended variational multiscale method for incompressible two‐phase flow
A novel extended variational multiscale method for incompressible two‐phase flow is
proposed. In this approach, the level‐set method, which allows for accurately representing …
proposed. In this approach, the level‐set method, which allows for accurately representing …