Atomization and Sprays
Autor Arthur H. Lefebvre, Vincent G. McDonellen Limba Engleză Hardback – 4 apr 2017
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Specificații
ISBN-13: 9781498736251
ISBN-10: 1498736254
Pagini: 300
Ilustrații: 278 Line drawings, black and white; 33 Halftones, black and white; 27 Tables, black and white; 312 Illustrations, black and white
Dimensiuni: 216 x 280 x 22 mm
Greutate: 0.94 kg
Ediția:2 New edition
Editura: CRC Press
Colecția CRC Press
ISBN-10: 1498736254
Pagini: 300
Ilustrații: 278 Line drawings, black and white; 33 Halftones, black and white; 27 Tables, black and white; 312 Illustrations, black and white
Dimensiuni: 216 x 280 x 22 mm
Greutate: 0.94 kg
Ediția:2 New edition
Editura: CRC Press
Colecția CRC Press
Public țintă
Professional Practice & DevelopmentCuprins
Preface
General Considerations
Introduction
Atomization
Atomizers
Factors Influencing Atomization
Spray Characteristics
Applications
Glossary
References
Basic Processes in Atomization
Introduction
Static Drop Formation
Breakup of Drops
Disintegration of Liquid Jets
Disintegration of Liquid Sheets
Summary
Nomenclature
References
Drop Size Distributions of Sprays
Introduction
Graphical Representation of Drop Size Distributions
Mathematical Distribution Functions
Empirical Distribution Functions
Mean Diameters
Representative Diameters
Drop Size Dispersion
Concluding Remarks
Nomenclature
References
Atomizers
Introduction
Atomizer Requirements
Pressure Atomizers
Rotary Atomizers
Air-Assist Atomizers
Airblast Atomizers
Effervescent Atomizers
Electrostatic Atomizers
Ultrasonic Atomizers
Whistle Atomizers
References
Flow in Atomizers
Introduction
Flow Number
Plain-Orifice Atomizer
Pressure-Swirl Atomizer
Rotary Atomizer
Airblast Atomizer
Nomenclature
References
Atomizer Performance
Introduction
Plain-Orifice Atomizer
Pressure-Swirl Atomizers
Rotary Atomizers
Air-Assist Atomizers
Airblast Atomizers
Effervescent Atomizer
Electrostatic Atomizers
Ultrasonic Atomizers
Nomenclature
References
External Spray Characteristics
Introduction
Spray Properties
Penetration
Spray Cone Angle
Circumferential Liquid Distribution
Airblast Atomizers
Drop Drag Coefficients
Nomenclature
References
Drop Evaporation
Introduction
Steady-State Evaporation
Unsteady-State Analysis
Drop Lifetime
Convective Effects on Evaporation
Calculation of Effective Evaporation Constant
Influence of Evaporation on Drop Size Distribution
Drop Burning
Multicomponent Fuel Drops
Nomenclature
References
Spray Size and Patternation Methods
Introduction
Factors Influencing Drop Size Measurement
Mechanical Methods
Electrical Methods
Optical Methods
Concluding Remarks
References
Author Index
Subject Index
General Considerations
Introduction
Atomization
Atomizers
Factors Influencing Atomization
Spray Characteristics
Applications
Glossary
References
Basic Processes in Atomization
Introduction
Static Drop Formation
Breakup of Drops
Disintegration of Liquid Jets
Disintegration of Liquid Sheets
Summary
Nomenclature
References
Drop Size Distributions of Sprays
Introduction
Graphical Representation of Drop Size Distributions
Mathematical Distribution Functions
Empirical Distribution Functions
Mean Diameters
Representative Diameters
Drop Size Dispersion
Concluding Remarks
Nomenclature
References
Atomizers
Introduction
Atomizer Requirements
Pressure Atomizers
Rotary Atomizers
Air-Assist Atomizers
Airblast Atomizers
Effervescent Atomizers
Electrostatic Atomizers
Ultrasonic Atomizers
Whistle Atomizers
References
Flow in Atomizers
Introduction
Flow Number
Plain-Orifice Atomizer
Pressure-Swirl Atomizer
Rotary Atomizer
Airblast Atomizer
Nomenclature
References
Atomizer Performance
Introduction
Plain-Orifice Atomizer
Pressure-Swirl Atomizers
Rotary Atomizers
Air-Assist Atomizers
Airblast Atomizers
Effervescent Atomizer
Electrostatic Atomizers
Ultrasonic Atomizers
Nomenclature
References
External Spray Characteristics
Introduction
Spray Properties
Penetration
Spray Cone Angle
Circumferential Liquid Distribution
Airblast Atomizers
Drop Drag Coefficients
Nomenclature
References
Drop Evaporation
Introduction
Steady-State Evaporation
Unsteady-State Analysis
Drop Lifetime
Convective Effects on Evaporation
Calculation of Effective Evaporation Constant
Influence of Evaporation on Drop Size Distribution
Drop Burning
Multicomponent Fuel Drops
Nomenclature
References
Spray Size and Patternation Methods
Introduction
Factors Influencing Drop Size Measurement
Mechanical Methods
Electrical Methods
Optical Methods
Concluding Remarks
References
Author Index
Subject Index
Recenzii
"The book covers important topics with tremendous applications in industrial and medical applications. This second edition keep the best sections of the first edition while all other sections and chapters are completely rewritten or updated. All developments in simulation and measurement techniques of atomization and spraying are included. One most important and helpful addition for instructors and students is the new solved examples, which ease the use of endless empirical relations and figures in design of sophisticated modules like combustion chambers."
— Ahmed F El-Sayed, Zagazig University, Egypt
"The book is very comprehensive and provides the necessary details to gain an understanding of atomization processes and how they are best applied. The book is an excellent resource for anyone working with atomization processes or materials that have been produced by atomization."
— Timothy J. Eden, The Pennsylvania State University, USA
— Ahmed F El-Sayed, Zagazig University, Egypt
"The book is very comprehensive and provides the necessary details to gain an understanding of atomization processes and how they are best applied. The book is an excellent resource for anyone working with atomization processes or materials that have been produced by atomization."
— Timothy J. Eden, The Pennsylvania State University, USA
Descriere
The second edition of this long-time bestseller provides, in one location, a framework for designing and understanding sprays for a wide array of engineering applications. Written to be accessible to readers with a modest technical backgrounds, the emphasis is on application rather than in-depth theory.