Analysis of Laminar Flow over a Backward Facing Step: A GAMM Workshop
Gespeichert in:
Weitere Verfasser: | , , |
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Format: | Elektronisch E-Book |
Sprache: | German |
Veröffentlicht: |
Wiesbaden
Vieweg+Teubner Verlag
1984
|
Schriftenreihe: | Notes on Numerical Fluid Mechanics
9 |
Schlagworte: | |
Online-Zugang: | Volltext |
Beschreibung: | ~~~~ INTRODUCTION 1. - The problem for analysis and requirements 2. - Results 3. - Comparison of computer times 4. - Conclusion. INTRODUCTION In 1981 it appeared to the organizers that a workshop to compare codes to solve the Navier-Stokes equations would be of great interest to the community of numerical analysts and users working on CFD (Computer fluid Dynamics). A test problem would have to be selected with the following features : 1. it should be suited for all known methods (finite differences, finite elements, spectral ... ) thus the geometry should be simple. 2. it should be simple so that scientists with small computer facilities can test it and the gradients in the flow should be reasonable in size so that algorithms don't blow up with a limited number of points and iterations. In practice one would have to select a stationary flow at moderate Reynolds number. 3. it should be a real flow to allow experimental measurements. The simplest problem used previously was the cavity flow problem ; however the singularity of the data at the boundary (point A and B on figure 1) makes it difficult for the Finite Element and Spectral methods ; furthermore it is not such an easy experiment to set up. A B .... u = 2 Flow around a cylinder, although most interesting of all, is too difficult because it is unbounded (many grid points) and very quickly unsteady (Re ~30) |
Beschreibung: | 1 Online-Ressource (VI, 420 S.) |
ISBN: | 9783663142423 9783528080839 |
ISSN: | 1612-2909 |
DOI: | 10.1007/978-3-663-14242-3 |
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500 | |a ~~~~ INTRODUCTION 1. - The problem for analysis and requirements 2. - Results 3. - Comparison of computer times 4. - Conclusion. INTRODUCTION In 1981 it appeared to the organizers that a workshop to compare codes to solve the Navier-Stokes equations would be of great interest to the community of numerical analysts and users working on CFD (Computer fluid Dynamics). A test problem would have to be selected with the following features : 1. it should be suited for all known methods (finite differences, finite elements, spectral ... ) thus the geometry should be simple. 2. it should be simple so that scientists with small computer facilities can test it and the gradients in the flow should be reasonable in size so that algorithms don't blow up with a limited number of points and iterations. In practice one would have to select a stationary flow at moderate Reynolds number. 3. it should be a real flow to allow experimental measurements. The simplest problem used previously was the cavity flow problem ; however the singularity of the data at the boundary (point A and B on figure 1) makes it difficult for the Finite Element and Spectral methods ; furthermore it is not such an easy experiment to set up. A B .... u = 2 Flow around a cylinder, although most interesting of all, is too difficult because it is unbounded (many grid points) and very quickly unsteady (Re ~30) | ||
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Datensatz im Suchindex
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any_adam_object | |
author2 | Morgan, Ken Periaux, Jacques Thomasset, François |
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discipline | Technik Technik Informatik |
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spelling | Morgan, Ken edt Analysis of Laminar Flow over a Backward Facing Step A GAMM Workshop herausgegeben von Ken Morgan, Jacques Periaux, François Thomasset Wiesbaden Vieweg+Teubner Verlag 1984 1 Online-Ressource (VI, 420 S.) txt rdacontent c rdamedia cr rdacarrier Notes on Numerical Fluid Mechanics 9 1612-2909 ~~~~ INTRODUCTION 1. - The problem for analysis and requirements 2. - Results 3. - Comparison of computer times 4. - Conclusion. INTRODUCTION In 1981 it appeared to the organizers that a workshop to compare codes to solve the Navier-Stokes equations would be of great interest to the community of numerical analysts and users working on CFD (Computer fluid Dynamics). A test problem would have to be selected with the following features : 1. it should be suited for all known methods (finite differences, finite elements, spectral ... ) thus the geometry should be simple. 2. it should be simple so that scientists with small computer facilities can test it and the gradients in the flow should be reasonable in size so that algorithms don't blow up with a limited number of points and iterations. In practice one would have to select a stationary flow at moderate Reynolds number. 3. it should be a real flow to allow experimental measurements. The simplest problem used previously was the cavity flow problem ; however the singularity of the data at the boundary (point A and B on figure 1) makes it difficult for the Finite Element and Spectral methods ; furthermore it is not such an easy experiment to set up. A B .... u = 2 Flow around a cylinder, although most interesting of all, is too difficult because it is unbounded (many grid points) and very quickly unsteady (Re ~30) Engineering Physics Mechanics Hydraulic engineering Engineering Fluid Dynamics Numerical and Computational Physics Physics, general Ingenieurwissenschaften Querschnittänderung (DE-588)4196881-5 gnd rswk-swf Numerische Mathematik (DE-588)4042805-9 gnd rswk-swf Navier-Stokes-Gleichung (DE-588)4041456-5 gnd rswk-swf Laminare Strömung (DE-588)4034181-1 gnd rswk-swf Stufenströmung (DE-588)4192284-0 gnd rswk-swf 1\p (DE-588)1071861417 Konferenzschrift 1983 Bièvres gnd-content Laminare Strömung (DE-588)4034181-1 s Querschnittänderung (DE-588)4196881-5 s 2\p DE-604 Navier-Stokes-Gleichung (DE-588)4041456-5 s Numerische Mathematik (DE-588)4042805-9 s 3\p DE-604 Stufenströmung (DE-588)4192284-0 s 4\p DE-604 Periaux, Jacques edt Thomasset, François edt Notes on Numerical Fluid Mechanics 9 (DE-604)BV000898664 9 https://doi.org/10.1007/978-3-663-14242-3 Verlag Volltext 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 4\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Analysis of Laminar Flow over a Backward Facing Step A GAMM Workshop Notes on Numerical Fluid Mechanics Engineering Physics Mechanics Hydraulic engineering Engineering Fluid Dynamics Numerical and Computational Physics Physics, general Ingenieurwissenschaften Querschnittänderung (DE-588)4196881-5 gnd Numerische Mathematik (DE-588)4042805-9 gnd Navier-Stokes-Gleichung (DE-588)4041456-5 gnd Laminare Strömung (DE-588)4034181-1 gnd Stufenströmung (DE-588)4192284-0 gnd |
subject_GND | (DE-588)4196881-5 (DE-588)4042805-9 (DE-588)4041456-5 (DE-588)4034181-1 (DE-588)4192284-0 (DE-588)1071861417 |
title | Analysis of Laminar Flow over a Backward Facing Step A GAMM Workshop |
title_auth | Analysis of Laminar Flow over a Backward Facing Step A GAMM Workshop |
title_exact_search | Analysis of Laminar Flow over a Backward Facing Step A GAMM Workshop |
title_full | Analysis of Laminar Flow over a Backward Facing Step A GAMM Workshop herausgegeben von Ken Morgan, Jacques Periaux, François Thomasset |
title_fullStr | Analysis of Laminar Flow over a Backward Facing Step A GAMM Workshop herausgegeben von Ken Morgan, Jacques Periaux, François Thomasset |
title_full_unstemmed | Analysis of Laminar Flow over a Backward Facing Step A GAMM Workshop herausgegeben von Ken Morgan, Jacques Periaux, François Thomasset |
title_short | Analysis of Laminar Flow over a Backward Facing Step |
title_sort | analysis of laminar flow over a backward facing step a gamm workshop |
title_sub | A GAMM Workshop |
topic | Engineering Physics Mechanics Hydraulic engineering Engineering Fluid Dynamics Numerical and Computational Physics Physics, general Ingenieurwissenschaften Querschnittänderung (DE-588)4196881-5 gnd Numerische Mathematik (DE-588)4042805-9 gnd Navier-Stokes-Gleichung (DE-588)4041456-5 gnd Laminare Strömung (DE-588)4034181-1 gnd Stufenströmung (DE-588)4192284-0 gnd |
topic_facet | Engineering Physics Mechanics Hydraulic engineering Engineering Fluid Dynamics Numerical and Computational Physics Physics, general Ingenieurwissenschaften Querschnittänderung Numerische Mathematik Navier-Stokes-Gleichung Laminare Strömung Stufenströmung Konferenzschrift 1983 Bièvres |
url | https://doi.org/10.1007/978-3-663-14242-3 |
volume_link | (DE-604)BV000898664 |
work_keys_str_mv | AT morganken analysisoflaminarflowoverabackwardfacingstepagammworkshop AT periauxjacques analysisoflaminarflowoverabackwardfacingstepagammworkshop AT thomassetfrancois analysisoflaminarflowoverabackwardfacingstepagammworkshop |