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Effect of boundary layer control on heat transfer from a rotating disc

Effect of boundary layer control on heat transfer from a rotating disc PDF Author: Mark Humphrey Lee
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Effect of boundary layer control on heat transfer from a rotating disc

Effect of boundary layer control on heat transfer from a rotating disc PDF Author: Mark Humphrey Lee
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


The Study of Convective Heat Transfer from a Rotating Disc with Special Emphasis on the Effects of Disturbing the Boundary Layer

The Study of Convective Heat Transfer from a Rotating Disc with Special Emphasis on the Effects of Disturbing the Boundary Layer PDF Author: R. W. Dennis
Publisher:
ISBN:
Category :
Languages : en
Pages : 250

Book Description


Convective Heat Transfer From Rotating Disks Subjected To Streams Of Air

Convective Heat Transfer From Rotating Disks Subjected To Streams Of Air PDF Author: Stefan aus der Wiesche
Publisher: Springer
ISBN: 3319201670
Category : Science
Languages : en
Pages : 119

Book Description
This Brief describes systematically results of research studies on a series of convective heat transfer phenomena from rotating disks in air crossflow. Phenomena described in this volume were investigated experimentally using an electrically heated disk placed in the test section of a wind tunnel. The authors describe findings in which transitions between different heat transfer regimes can occur in dependency on the involved Reynolds numbers and the angle of incidence, and that these transitions could be related to phenomenological Landau and Landau-de Gennes models. The concise volume closes a substantial gap in the scientific literature with respect to flow and heat transfer in rotating disk systems and provides a comprehensive presentation of new and recent results not previously published in book form.

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.

Convective Heat and Mass Transfer in Rotating Disk Systems

Convective Heat and Mass Transfer in Rotating Disk Systems PDF Author: Igor V. Shevchuk
Publisher: Springer Science & Business Media
ISBN: 364200718X
Category : Science
Languages : en
Pages : 256

Book Description
The book is devoted to investigation of a series of problems of convective heat and mass transfer in rotating-disk systems. Such systems are widespread in scienti?c and engineering applications. As examples from the practical area, one can mention gas turbine and computer engineering, disk brakes of automobiles, rotating-disk air cleaners, systems of microclimate, extractors, dispensers of liquids, evaporators, c- cular saws, medical equipment, food process engineering, etc. Among the scienti?c applications, it is necessary to point out rotating-disk electrodes used for experim- tal determination of the diffusion coef?cient in electrolytes. The system consisting of a ?xed disk and a rotating cone that touches the disk by its vertex is widely used for measurement of the viscosity coef?cient of liquids. For time being, large volume of experimental and computational data on par- eters of ?uid ?ow, heat and mass transfer in different types of rotating-disk systems have been accumulated, and different theoretical approaches to their simulation have been developed. This obviously causes a need of systematization and generalization of these data in a book form.

Handbook of Thermal Science and Engineering

Handbook of Thermal Science and Engineering PDF Author:
Publisher: Springer
ISBN: 9783319266947
Category : Science
Languages : en
Pages : 0

Book Description
This Handbook provides researchers, faculty, design engineers in industrial R&D, and practicing engineers in the field concise treatments of advanced and more-recently established topics in thermal science and engineering, with an important emphasis on micro- and nanosystems, not covered in earlier references on applied thermal science, heat transfer or relevant aspects of mechanical/chemical engineering. Major sections address new developments in heat transfer, transport phenomena, single- and multiphase flows with energy transfer, thermal-bioengineering, thermal radiation, combined mode heat transfer, coupled heat and mass transfer, and energy systems. Energy transport at the macro-scale and micro/nano-scales is also included. The internationally recognized team of authors adopt a consistent and systematic approach and writing style, including ample cross reference among topics, offering readers a user-friendly knowledgebase greater than the sum of its parts, perfect for frequent consultation. The Handbook of Thermal Science and Engineering is ideal for academic and professional readers in the traditional and emerging areas of mechanical engineering, chemical engineering, aerospace engineering, bioengineering, electronics fabrication, energy, and manufacturing concerned with the influence thermal phenomena.

Heat Transfer in the Rotating Disk Boundary Layer

Heat Transfer in the Rotating Disk Boundary Layer PDF Author: Christopher J. Elkins
Publisher:
ISBN:
Category :
Languages : en
Pages : 502

Book Description


Flow and Heat Transfer in Rotating-disc Systems

Flow and Heat Transfer in Rotating-disc Systems PDF Author: J. M. Owen
Publisher:
ISBN:
Category : Disks, Rotating
Languages : en
Pages : 312

Book Description


Modelling of Convective Heat and Mass Transfer in Rotating Flows

Modelling of Convective Heat and Mass Transfer in Rotating Flows PDF Author: Igor V. Shevchuk
Publisher: Springer
ISBN: 3319209612
Category : Science
Languages : en
Pages : 253

Book Description
This monograph presents results of the analytical and numerical modeling of convective heat and mass transfer in different rotating flows caused by (i) system rotation, (ii) swirl flows due to swirl generators, and (iii) surface curvature in turns and bends. Volume forces (i.e. centrifugal and Coriolis forces), which influence the flow pattern, emerge in all of these rotating flows. The main part of this work deals with rotating flows caused by system rotation, which includes several rotating-disk configurations and straight pipes rotating about a parallel axis. Swirl flows are studied in some of the configurations mentioned above. Curvilinear flows are investigated in different geometries of two-pass ribbed and smooth channels with 180° bends. The author demonstrates that the complex phenomena of fluid flow and convective heat transfer in rotating flows can be successfully simulated using not only the universal CFD methodology, but in certain cases by means of the integral methods, self-similar and analytical solutions. The book will be a valuable read for research experts and practitioners in the field of heat and mass transfer.

Heat Transfer to a Non-isothermal Rotating Disk with a Turbulent Boundary Layer

Heat Transfer to a Non-isothermal Rotating Disk with a Turbulent Boundary Layer PDF Author: James P. Hartnett
Publisher:
ISBN:
Category : Boundary layer
Languages : en
Pages : 24

Book Description