Ranque Hilsch Vortex Tube Demystified - André Kaufmann

Ranque Hilsch Vortex Tube Demystified

Understanding the Working Principles of the Vortex Tube

The book describes the thermodynamics, fluid dynamics, and working principle of the Ranque Hilsch Vortex Tube. Although vortex tubes have been around for a long time, different explications of their fundamental physics and operation can be found in literature and on the internet. Les mer
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Leveringstid: Usikker levering*
*Vi bestiller varen fra forlag i utlandet. Dersom varen finnes, sender vi den så snart vi får den til lager

The book describes the thermodynamics, fluid dynamics, and working principle of the Ranque Hilsch Vortex Tube. Although vortex tubes have been around for a long time, different explications of their fundamental physics and operation can be found in literature and on the internet. This volume investigates the working principle based on thermodynamics and fluid dynamics. It provides full explication of these parameters in one single work along with results of new investigations not published elsewhere. In addition, the book features a wealth of illustrations on various aspects of the vortex tube that make it easy to read and understand.
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Utgitt:
Forlag: Springer Nature Switzerland AG
Innbinding: Innbundet
Språk: Engelsk
Sider: 72
ISBN: 9783030897659
Format: 24 x 16 cm
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Introduction to the Ranque Hilsch Vortex Tube.- The thermodynamic point of view.- Flow in the vortex tube .- The energy transport mechanism 55 4.1 Energy conservation equations.- The working mechanism of the RHVT 91 5.1 Definition of thermodynamic states.- Useful Applications of the RHVT.
Physicist and engineer Andre Kaufmann is the author of numerous publications in the field of fluid mechanics and co-author of a textbook on thermodynamics. Coined by his industrial experience, he deals with complex phenomena of engineering covering subjects that reach far beyond his ordinary tasks of teaching thermodynamics and fluid dynamics at the University of Applied Sciences, Ravensburg, Germany.