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Rotating Cavity with Axial Throughflow of Cooling Air: Flow Structure

Rotating Cavity with Axial Throughflow of Cooling Air: Flow Structure PDF Author: P. R. Farthing
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Rotating Cavity with Axial Throughflow of Cooling Air: Flow Structure

Rotating Cavity with Axial Throughflow of Cooling Air: Flow Structure PDF Author: P. R. Farthing
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Numerical and Experimental Investigation of Flow Structure and Heat Transfer in a Rotating Cavity with an Axial Throughflow of Cooling Air

Numerical and Experimental Investigation of Flow Structure and Heat Transfer in a Rotating Cavity with an Axial Throughflow of Cooling Air PDF Author: P. G. Tucker
Publisher:
ISBN:
Category :
Languages : en
Pages : 290

Book Description


Rotating Cavity with Axial Throughflow of Cooling Air: Heat Transfer

Rotating Cavity with Axial Throughflow of Cooling Air: Heat Transfer PDF Author: P. R. Farthing
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Flow and Heat Transfer in a Rotating Cavity with Axial Throughflow

Flow and Heat Transfer in a Rotating Cavity with Axial Throughflow PDF Author: Dietmar Kurt Hennecke
Publisher:
ISBN:
Category : Compressors
Languages : en
Pages : 378

Book Description


Rotating Flow

Rotating Flow PDF Author: Peter Childs
Publisher: Elsevier
ISBN: 0123820995
Category : Science
Languages : en
Pages : 415

Book Description
Rotating flow is critically important across a wide range of scientific, engineering and product applications, providing design and modeling capability for diverse products such as jet engines, pumps and vacuum cleaners, as well as geophysical flows.Developed over the course of 20 years’ research into rotating fluids and associated heat transfer at the University of Sussex Thermo-Fluid Mechanics Research Centre (TFMRC), Rotating Flow is an indispensable reference and resource for all those working within the gas turbine and rotating machinery industries.Traditional fluid and flow dynamics titles offer the essential background but generally include very sparse coverage of rotating flows—which is where this book comes in. Beginning with an accessible introduction to rotating flow, recognized expert Peter Childs takes you through fundamental equations, vorticity and vortices, rotating disc flow, flow around rotating cylinders and flow in rotating cavities, with an introduction to atmospheric and oceanic circulations included to help deepen understanding.Whilst competing resources are weighed down with complex mathematics, this book focuses on the essential equations and provides full workings to take readers step-by-step through the theory so they can concentrate on the practical applications. A detailed yet accessible introduction to rotating flows, illustrating the differences between flows where rotation is significant and highlighting the non-intuitive nature of rotating flow fields Written by world-leading authority on rotating flow, Peter Childs, making this a unique and authoritative work Covers the essential theory behind engineering applications such as rotating discs, cylinders, and cavities, with natural phenomena such as atmospheric and oceanic flows used to explain underlying principles Provides a rigorous, fully worked mathematical account of rotating flows whilst also including numerous practical examples in daily life to highlight the relevance and prevalence of different flow types Concise summaries of the results of important research and lists of references included to direct readers to significant further resources

Flow and Heat Transfer in Rotating-disc Systems

Flow and Heat Transfer in Rotating-disc Systems PDF Author: J. M. Owen
Publisher:
ISBN: 9780863801792
Category : Science
Languages : en
Pages : 328

Book Description
This volume is devoted to the flow and heat transfer between co-rotating discs, and unifies the subject by means of physical insight and mathematical models, validated using experimental data. Many phenomena, unique to rotating flows, are explained, and empirical correlations and theoretical methods, suitable for design purposes, are presented. Data is provided within the book for validating CFD codes which are being increasingly used to compute the flow in rotating-disc systems. Since the publication of Volume 1 in 1989, there has been an increasing interest in rotating disc systems, mainly from research workers and engine designers concerned with understanding and computing the complex flow and heat transfer that occur inside the internal cooling-systems of gas-turbine engines. This book should be of interest to them as it may assist them in making more efficient use of cooling air systems, resulting in both economic and environmental benefits.

Flow and Heat Transfer in a Rotating Cavity with Axial Throughflow

Flow and Heat Transfer in a Rotating Cavity with Axial Throughflow PDF Author: Dietmar K. Hennecke
Publisher:
ISBN:
Category : Compressors
Languages : en
Pages : 189

Book Description


Flow and Heat Transfer Measurements Inside a Heated Multiple Rotating Cavity with Axial Throughflow

Flow and Heat Transfer Measurements Inside a Heated Multiple Rotating Cavity with Axial Throughflow PDF Author: Nicolas D. D. Miché
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Gas Turbines

Gas Turbines PDF Author: Bijay Sultanian
Publisher: Cambridge University Press
ISBN: 1316761940
Category : Technology & Engineering
Languages : en
Pages : 375

Book Description
This long-awaited, physics-first and design-oriented text describes and explains the underlying flow and heat transfer theory of secondary air systems. An applications-oriented focus throughout the book provides the reader with robust solution techniques, state-of-the-art three-dimensional computational fluid dynamics (CFD) methodologies, and examples of compressible flow network modeling. It clearly explains elusive concepts of windage, non-isentropic generalized vortex, Ekman boundary layer, rotor disk pumping, and centrifugally-driven buoyant convection associated with gas turbine secondary flow systems featuring rotation. The book employs physics-based, design-oriented methodology to compute windage and swirl distributions in a complex rotor cavity formed by surfaces with arbitrary rotation, counter-rotation, and no rotation. This text will be a valuable tool for aircraft engine and industrial gas turbine design engineers as well as graduate students enrolled in advanced special topics courses.

Unsteady Computational Fluid Dynamics in Aeronautics

Unsteady Computational Fluid Dynamics in Aeronautics PDF Author: P.G. Tucker
Publisher: Springer Science & Business Media
ISBN: 9400770499
Category : Technology & Engineering
Languages : en
Pages : 432

Book Description
The field of Large Eddy Simulation (LES) and hybrids is a vibrant research area. This book runs through all the potential unsteady modelling fidelity ranges, from low-order to LES. The latter is probably the highest fidelity for practical aerospace systems modelling. Cutting edge new frontiers are defined. One example of a pressing environmental concern is noise. For the accurate prediction of this, unsteady modelling is needed. Hence computational aeroacoustics is explored. It is also emerging that there is a critical need for coupled simulations. Hence, this area is also considered and the tensions of utilizing such simulations with the already expensive LES. This work has relevance to the general field of CFD and LES and to a wide variety of non-aerospace aerodynamic systems (e.g. cars, submarines, ships, electronics, buildings). Topics treated include unsteady flow techniques; LES and hybrids; general numerical methods; computational aeroacoustics; computational aeroelasticity; coupled simulations and turbulence and its modelling (LES, RANS, transition, VLES, URANS). The volume concludes by pointing forward to future horizons and in particular the industrial use of LES. The writing style is accessible and useful to both academics and industrial practitioners. From the reviews: "Tucker's volume provides a very welcome, concise discussion of current capabilities for simulating and modellng unsteady aerodynamic flows. It covers the various pos sible numerical techniques in good, clear detail and presents a very wide range of practical applications; beautifully illustrated in many cases. This book thus provides a valuable text for practicing engineers, a rich source of background information for students and those new to this area of Research & Development, and an excellent state-of-the-art review for others. A great achievement." Mark Savill FHEA, FRAeS, C.Eng, Professor of Computational Aerodynamics Design & Head of Power & Propulsion Sciences, Department of Power & Propulsion, School of Engineering, Cranfield University, Bedfordshire, U.K. "This is a very useful book with a wide coverage of many aspects in unsteady aerodynamics method development and applications for internal and external flows." L. He, Rolls-Royce/RAEng Chair of Computational Aerothermal Engineering, Oxford University, U.K. "This comprehensive book ranges from classical concepts in both numerical methods and turbulence modelling approaches for the beginner to latest state-of-the-art for the advanced practitioner and constitutes an extremely valuable contribution to the specific Computational Fluid Dynamics literature in Aeronautics. Student and expert alike will benefit greatly by reading it from cover to cover." Sébastien Deck, Onera, Meudon, France