Swirling flows and flames / / edited by Toufik Boushaki.

Swirl flows are used in a wide range of industrial applications. In non-reacting cases, examples of applications include vortex amplifiers and reactors, heat exchangers, jet pumps, and cyclone separators. In reacting cases, swirlers are widely used in combustion systems, such as gas turbines, indust...

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Place / Publishing House:London, England : : IntechOpen,, [2019]
©2019
Year of Publication:2019
Language:English
Physical Description:1 online resource (118 pages) :; illustrations
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300 |a 1 online resource (118 pages) :  |b illustrations 
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588 |a Description based on: online resource; title from PDF information screen (InTech, viewed October 15, 2022). 
504 |a Includes bibliographical references. 
520 |a Swirl flows are used in a wide range of industrial applications. In non-reacting cases, examples of applications include vortex amplifiers and reactors, heat exchangers, jet pumps, and cyclone separators. In reacting cases, swirlers are widely used in combustion systems, such as gas turbines, industrial furnaces, boilers, gasoline and diesel engines, and many other practical heating devices. Effects of using swirl on flow and combustion are significant and varied, and concern, for example, aerodynamics, mixing, flame stability, intensity of combustion, and pollutant emissions. The purpose of this book is to present recent research efforts to understand and characterize swirling flows of different types and in different applications. These include gaseous, liquid, and solid fuels in order to enhance combustion systems and their energy efficiency. Swirl flows are very complex and the studies proposed in this project are based on different means, including theoretical calculations, numerical modeling, and experimental measurements. 
546 |a English 
650 0 |a Rotational motion. 
653 |a Physical Sciences 
653 |a Engineering and Technology 
653 |a Fluid Dynamics 
653 |a Fluid Mechanics 
653 |a Physics 
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700 1 |a Boushaki, Toufik,  |e editor. 
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