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Differential Reynolds Stress Modeling for Separating Flows in Industrial Aerodyn

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Item specifics

Condition
New: A new, unread, unused book in perfect condition with no missing or damaged pages. See the ...
ISBN-13
9783319385693
Type
NA
Publication Name
NA
ISBN
9783319385693
Publication Year
2016
Format
Trade Paperback
Language
English
Book Title
Differential Reynolds Stress Modeling for Separating Flows in Industrial Aerodynamics
Author
Bernhard Eisfeld
Item Length
9.3in
Publisher
Springer International Publishing A&G
Genre
Technology & Engineering, Science
Topic
Mechanics / Fluids, Mechanical, Mechanics / Aerodynamics, Mechanics / Thermodynamics
Item Width
6.1in
Item Weight
64.4 Oz
Number of Pages
VII, 101 Pages

About this product

Product Information

Application of a low Reynolds differential Reynolds stress model to a compressor cascade tip-leakage flow.- Application of Reynolds stress models to separated aerodynamic flows.- Separated flow prediction around a 6:1 prolate spheroid using Reynolds stress models.- Influence of pressure-strain closure of the prediction of separated flows.- Modeling of Reynolds-stress augmentation in shear layers with strongly curved velocity profiles.

Product Identifiers

Publisher
Springer International Publishing A&G
ISBN-10
3319385690
ISBN-13
9783319385693
eBay Product ID (ePID)
240390671

Product Key Features

Book Title
Differential Reynolds Stress Modeling for Separating Flows in Industrial Aerodynamics
Author
Bernhard Eisfeld
Format
Trade Paperback
Language
English
Topic
Mechanics / Fluids, Mechanical, Mechanics / Aerodynamics, Mechanics / Thermodynamics
Publication Year
2016
Genre
Technology & Engineering, Science
Number of Pages
VII, 101 Pages

Dimensions

Item Length
9.3in
Item Width
6.1in
Item Weight
64.4 Oz

Additional Product Features

Number of Volumes
1 Vol.
Lc Classification Number
Ta357-359
Table of Content
Application of a low Reynolds differential Reynolds stress model to a compressor cascade tip-leakage flow.- Application of Reynolds stress models to separated aerodynamic flows.- Separated flow prediction around a 6:1 prolate spheroid using Reynolds stress models.- Influence of pressure-strain closure of the prediction of separated flows.- Modeling of Reynolds-stress augmentation in shear layers with strongly curved velocity profiles.
Copyright Date
2015
Dewey Decimal
532.0527
Series
Springer Tracts in Mechanical Engineering Ser.
Dewey Edition
23
Illustrated
Yes

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Premier Books LLC
David Taylor
26C Trolley Sq
19806-3356 Wilmington, DE
United States
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