Fluid mechanics in channel, pipe and aerodynamic design geometries

Fluid mechanics is an important scientific field with various industrial applications for flows or energy consumption and efficiency issues. This book has as main aim to be a textbook of applied knowledge in real fluids as well as to the Hydraulic systems components and operation, with emphasis to t...

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1. Verfasser: Georgantopoulou, Christina G.
Weitere Verfasser: Georgantopoulos, George A.
Format: E-Book
Sprache:English
Veröffentlicht: London Hoboken, NJ ISTE Ltd. John Wiley & Sons, Inc. 2018
Schriftenreihe:Engineering, energy and architecture set volume 3
Science, society and new technologies series
Online-Zugang:Volltext
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880 8 |6 505-00/(S  |a 2.18. Problems with solutions2.19. Problems to be solved; 3. Boundary Layer; 3.1. Introduction; 3.2. Laminar incompressible boundary layer; 3.3. Characteristic values of the boundary layer; 3.3.1. Thickness δ of the boundary layer; 3.3.2. The thickness displacement δ'1; 3.4. Flow types in the boundary layer; 3.5. Formulae; 3.6. Questions; 3.7. Problems with solutions; 3.8. Problems to be solved; 4. Flow Around Solid Bodies; 4.1. Introduction; 4.2. Geometrical characteristics of an airfoil; 4.3. Kutta-Joukowski equation; 4.4. Aerodynamic paradox; 4.5. Pressure distribution in an airfoil 
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spelling Georgantopoulou, Christina G.
Fluid mechanics in channel, pipe and aerodynamic design geometries Christina G. Georgantopoulou, George A. Georgantopoulos
London ISTE Ltd. Hoboken, NJ John Wiley & Sons, Inc. 2018
1 Online-Ressource
txt
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Engineering, energy and architecture set volume 3
Science, society and new technologies series
505-00/(S 2.18. Problems with solutions2.19. Problems to be solved; 3. Boundary Layer; 3.1. Introduction; 3.2. Laminar incompressible boundary layer; 3.3. Characteristic values of the boundary layer; 3.3.1. Thickness δ of the boundary layer; 3.3.2. The thickness displacement δ'1; 3.4. Flow types in the boundary layer; 3.5. Formulae; 3.6. Questions; 3.7. Problems with solutions; 3.8. Problems to be solved; 4. Flow Around Solid Bodies; 4.1. Introduction; 4.2. Geometrical characteristics of an airfoil; 4.3. Kutta-Joukowski equation; 4.4. Aerodynamic paradox; 4.5. Pressure distribution in an airfoil
Fluid mechanics is an important scientific field with various industrial applications for flows or energy consumption and efficiency issues. This book has as main aim to be a textbook of applied knowledge in real fluids as well as to the Hydraulic systems components and operation, with emphasis to the industrial or real life problems for piping and aerodynamic design geometries. Various problems will be presented and analyzed through this book. '
Georgantopoulos, George A.
Erscheint auch als Druck-Ausgabe 9781786301390
TUM01 ZDB-10-MMN TUM_PDA_MMN https://app.knovel.com/hotlink/toc/id:kpFMCPAD01/fluid-mechanics-in?kpromoter=marc Volltext
spellingShingle Georgantopoulou, Christina G.
Fluid mechanics in channel, pipe and aerodynamic design geometries
title Fluid mechanics in channel, pipe and aerodynamic design geometries
title_auth Fluid mechanics in channel, pipe and aerodynamic design geometries
title_exact_search Fluid mechanics in channel, pipe and aerodynamic design geometries
title_full Fluid mechanics in channel, pipe and aerodynamic design geometries Christina G. Georgantopoulou, George A. Georgantopoulos
title_fullStr Fluid mechanics in channel, pipe and aerodynamic design geometries Christina G. Georgantopoulou, George A. Georgantopoulos
title_full_unstemmed Fluid mechanics in channel, pipe and aerodynamic design geometries Christina G. Georgantopoulou, George A. Georgantopoulos
title_short Fluid mechanics in channel, pipe and aerodynamic design geometries
title_sort fluid mechanics in channel pipe and aerodynamic design geometries
url https://app.knovel.com/hotlink/toc/id:kpFMCPAD01/fluid-mechanics-in?kpromoter=marc
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