Flow Resistance: A Design Guide for Engineers
A sourcebook offering an up-to-date perspective on a variety of topics and using practical, applications-oriented data necessary for the design and evaluation of internal fluid system pressure losses. It has been prepared for the practicing engineer who understands fluid-flow fundamentals.
1124380118
Flow Resistance: A Design Guide for Engineers
A sourcebook offering an up-to-date perspective on a variety of topics and using practical, applications-oriented data necessary for the design and evaluation of internal fluid system pressure losses. It has been prepared for the practicing engineer who understands fluid-flow fundamentals.
318.99 In Stock
Flow Resistance: A Design Guide for Engineers

Flow Resistance: A Design Guide for Engineers

by I.E. Idelchik
Flow Resistance: A Design Guide for Engineers

Flow Resistance: A Design Guide for Engineers

by I.E. Idelchik

eBook

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Overview

A sourcebook offering an up-to-date perspective on a variety of topics and using practical, applications-oriented data necessary for the design and evaluation of internal fluid system pressure losses. It has been prepared for the practicing engineer who understands fluid-flow fundamentals.

Product Details

ISBN-13: 9781351447881
Publisher: CRC Press
Publication date: 08/25/2017
Sold by: Barnes & Noble
Format: eBook
Pages: 416
File size: 100 MB
Note: This product may take a few minutes to download.

About the Author

Idelchik, I.E.

Table of Contents

1. General Information 2. Flow in Straight Tubes and Conduits: Friction Coefficients and Roughness 3. Flow at the Entrance into Tubes and Conduits: Resistance Coefficients of Inlet Sections 4. Flow Through Orifices with Sudden Change in Velocity and Flow Area: Resistance Coefficients of Sections with Sudden Expansion, Sudden Contraction, Orifices, Diaphragms, and Apertures 5. Flow with a Smooth Change in Velocity: Resistance Coefficients of Difftisers and Converging and Other Transition Sections 6. Flow with Changes of the Stream Direction: Resistance Coefficients of Curved Segments—Elbows and Bends 7. Merging of Flow Streams and Division into Flow Streams: Resistance Coefficients of Wyes, Tees, and Manifolds 8. Flow Through Barriers Uniformly Distributed Over the Channel Cross Section: Resistance Coefficients of Grids, Screens, Porous Layers, and Packings 9. Flow Through Pipe Fittings and Labyrinth Seals 10. Flow Past Obstructions in a Tube: Resistance Coefficients of Sections with Protuberances, Trusses, Girders, and other Shapes 11. Flow at the Exit from Tubes and Channels: Resistance Coefficients of Exit Sections
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