Numerical Simulation of Incompressible Viscous Flow : Methods and Applications / Roland Glowinski, Tsorng-Whay Pan.
Material type:
TextLanguage: Series: De Gruyter Series in Applied and Numerical Mathematics ; 7Publisher: Berlin Boston De Gruyter, [2022]Copyright date: ©2022Description: 1 online resource (XVI, 216 p.)Content type: - text
- computer
- online resource
- 9783110785012
- MATHEMATICS / General
- MATHEMATICS / Applied
- MATHEMATICS / Numerical Analysis
- Technology & Engineering / Mechanical
- Viskoser Fluss
- Navier-Stokes-Gleichungen
- Navier-Stokes Equations
- viscous flow
- numerical experiments
- finite element methods
- Navier-Stokes Equations, viscous flow, numerical experiments, finite element methods
- Issued also in print.
| Cover image | Item type | Current library | Home library | Collection | Shelving location | Call number | Materials specified | Vol info | URL | Copy number | Status | Notes | Date due | Barcode | Item holds | Item hold queue priority | Course reserves | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Electronic Books | CUTN Central Library | Link to resource | Available | EB04736 |
Frontmatter -- Preface -- Contents -- 1 Governing equations -- 2 Operator splitting methods for initial value problems: Application to the Navier-Stokes equations -- 3 Advection problems -- 4 Numerical solution of the generalized Stokes-type subproblems -- 5 Finite-element approximation of the Navier-Stokes equations -- 6 Numerical experiments: Description and results -- 7 Further applications (I): A distributed Lagrange multiplier/fictitious-domain method for simulating lid-driven viscous flows in a hemispherical cavity -- 8 Further applications (II): On the simulation of the lid-driven cavity flow of an Oldroyd-B fluid -- 9 Further applications (III): A distributed Lagrange multiplier/fictitious-domain method for simulating particles settling in an Oldroyd-B fluid -- Bibliography -- Index
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This book on finite element-based computational methods for solving incompressible viscous fluid flow problems shows readers how to apply operator splitting techniques to decouple complicated computational fluid dynamics problems into a sequence of relatively simpler sub-problems at each time step, such as hemispherical cavity flow, cavity flow of an Oldroyd-B viscoelastic flow, and particle interaction in an Oldroyd-B type viscoelastic fluid. Efficient and robust numerical methods for solving those resulting simpler sub-problems are introduced and discussed. Interesting computational results are presented to show the capability of methodologies addressed in the book.
Issued also in print.
The accessibility of this resources in unknown or unassessed.
Mode of access: Internet via World Wide Web.
Roland Glowinski† and Tsorng-Whay Pan, University of Houston, USA.
In English.
Description based on online resource; title from PDF title page (publisher's Web site, viewed March 03 2026)
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