Laser Velocimetry in Fluid Mechanics

Nonfiction, Science & Nature, Science, Physics, Mechanics
Cover of the book Laser Velocimetry in Fluid Mechanics by , Wiley
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9781118569337
Publisher: Wiley Publication: January 9, 2013
Imprint: Wiley-ISTE Language: English
Author:
ISBN: 9781118569337
Publisher: Wiley
Publication: January 9, 2013
Imprint: Wiley-ISTE
Language: English

In fluid mechanics, velocity measurement is fundamental in order to improve the behavior knowledge of the flow. Velocity maps help us to understand the mean flow structure and its fluctuations, in order to further validate codes.
Laser velocimetry is an optical technique for velocity measurements; it is based on light scattering by tiny particles assumed to follow the flow, which allows the local fluid flow velocity and its fluctuations to be determined. It is a widely used non-intrusive technique to measure velocities in fluid flows, either locally or in a map.
This book presents the various techniques of laser velocimetry, as well as their specific qualities: local measurements or in plane maps, mean or instantaneous values, 3D measurements. Flow seeding with particles is described with currently used products, as well as the appropriate aerosol generators. Post-processing of data allows us to extract synthetic information from measurements and to perform comparisons with results issued from CFD codes. The principles and characteristics of the different available techniques, all based on the scattering of light by tiny particles embedded in the flow, are described in detail; showing how they deliver different information, either locally or in a map, mean values and turbulence characteristics.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

In fluid mechanics, velocity measurement is fundamental in order to improve the behavior knowledge of the flow. Velocity maps help us to understand the mean flow structure and its fluctuations, in order to further validate codes.
Laser velocimetry is an optical technique for velocity measurements; it is based on light scattering by tiny particles assumed to follow the flow, which allows the local fluid flow velocity and its fluctuations to be determined. It is a widely used non-intrusive technique to measure velocities in fluid flows, either locally or in a map.
This book presents the various techniques of laser velocimetry, as well as their specific qualities: local measurements or in plane maps, mean or instantaneous values, 3D measurements. Flow seeding with particles is described with currently used products, as well as the appropriate aerosol generators. Post-processing of data allows us to extract synthetic information from measurements and to perform comparisons with results issued from CFD codes. The principles and characteristics of the different available techniques, all based on the scattering of light by tiny particles embedded in the flow, are described in detail; showing how they deliver different information, either locally or in a map, mean values and turbulence characteristics.

More books from Wiley

Cover of the book Atlas of Benthic Foraminifera by
Cover of the book The Value and Momentum Trader by
Cover of the book Barry's Advanced Construction of Buildings by
Cover of the book High-Powered Investing All-in-One For Dummies by
Cover of the book Head, Heart and Guts by
Cover of the book The Firm of the Future by
Cover of the book Fundamentals of Digital Logic and Microcontrollers by
Cover of the book Teach Like a Champion Field Guide 2.0 by
Cover of the book Signal Integrity by
Cover of the book Occupational Ergonomics by
Cover of the book Sustainable Operations and Supply Chain Management by
Cover of the book Liver Transplantation by
Cover of the book Can the Welfare State Survive? by
Cover of the book 77th Conference on Glass Problems by
Cover of the book Positive Psychology and Family Therapy by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy