Stabilized 3D finite elements for the numerical solution of the Navier-Stokes equations in semiconductors
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Publication:1033190
DOI10.1016/j.cma.2006.09.020zbMath1173.76356OpenAlexW2003140967MaRDI QIDQ1033190
G. Scrofani, Carlo de Falco, Riccardo Sacco
Publication date: 6 November 2009
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cma.2006.09.020
Statistical mechanics of semiconductors (82D37) Finite element methods applied to problems in fluid mechanics (76M10) Compressible fluids and gas dynamics (76N99)
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Cites Work
- A new finite element formulation for computational fluid dynamics. VIII. The Galerkin/least-squares method for advective-diffusive equations
- A new finite element formulation for computational fluid dynamics. I: Symmetric forms of the compressible Euler and Navier-Stokes equations and the second law of thermodynamics
- A new finite element formulation for computational fluid dynamics. IV: A discontinuity-capturing operator for multidimensional advective-diffusive systems
- A new finite element formulation for computational fluid dynamics. II. Beyond SUPG
- A new finite element formulation for computational fluid dynamics. III: The generalized streamline operator for multidimensional advective- diffusive systems
- On the symmetric form of systems of conservation laws with entropy
- Finite element methods (Part 1)
- A finite element formulation for the hydrodynamic semiconductor device equations
- Numerical problems in semiconductor simulation using the hydrodynamic model: a second-order finite difference scheme.
- Numerical solution of two-carrier hydrodynamic semiconductor device equations employing a stabilized finite element method
- Semiconductor device simulation using a viscous hydrodynamic model.
- A domain decomposition method for silicon devices
- Derivation of New Quantum Hydrodynamic Equations Using Entropy Minimization
- SEMICONDUCTOR DEVICE MODELING USING FLUX UPWIND FINITE ELEMENTS
- Thermodynamic derivation of the hydrodynamical model for charge transport in semiconductors
- Initial boundary value problems for incompletely parabolic systems
- Incompletely Parabolic Problems in Fluid Dynamics
- The Quantum Hydrodynamic Model for Semiconductor Devices
- Mixed finite volume methods for semiconductor device simulation
- Stabilized mixed finite elements for fluid models in semiconductors
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