Transient Natural Convection Heat Transfer in a Horizontal Cylinder
Author: Howard G. Maahs
Publisher:
Published: 1964
Total Pages: 532
ISBN-13:
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Author: Howard G. Maahs
Publisher:
Published: 1964
Total Pages: 532
ISBN-13:
DOWNLOAD EBOOKAuthor: I. Pop
Publisher: Elsevier
Published: 2001-02-23
Total Pages: 673
ISBN-13: 0080530001
DOWNLOAD EBOOKInterest in studying the phenomena of convective heat and mass transfer between an ambient fluid and a body which is immersed in it stems both from fundamental considerations, such as the development of better insights into the nature of the underlying physical processes which take place, and from practical considerations, such as the fact that these idealised configurations serve as a launching pad formodelling the analogous transfer processes in more realistic physical systems. Such idealised geometries also provide a test ground for checking the validity of theoreticalanalyses. Consequently, an immense research effort has been expended in exploring and understanding the convective heat and mass transfer processes between a fluid and submerged objects of various shapes. Among several geometries which have received considerable attention are plates, circular and elliptical cylinders, and spheres, although much information is also available for some other bodies, such ascorrugated surfaces or bodies of relatively complicated shapes. The book is a unified progress report which captures the spirit of the work in progress in boundary-layer heat transfer research and also identifies potential difficulties and areas for further study. In addition, this work provides new material on convective heat and mass transfer, as well as a fresh look at basic methods in heat transfer. Extensive references are included in order to stimulate further studies of the problems considered. A state-of-the-art picture of boundary-layer heat transfer today is presented by listing and commenting also upon the most recent successful efforts and identifying the needs for further research.
Author: Aroon Shenoy
Publisher: John Wiley & Sons
Published: 2018-03-12
Total Pages: 308
ISBN-13: 3527343628
DOWNLOAD EBOOKThis book has been written with the idea of providing the fundamentals for those who are interested in the field of heat transfer to non-Newtonian fluids. It is well recognized that non-Newtonian fluids are encountered in a number of transport processes and estimation of the heat transfer characteristics in the presence of these fluids requires analysis of equations that are far more complex than those encountered for Newtonian fluids. A deliberate effort has been made to demonstrate the methods of simplification of the complex equations and to put forth analytical expressions for the various heat transfer situations in as vivid a manner as possible. The book covers a broad range of topics from forced, natural and mixed convection without and with porous media. Laminar as well as turbulent flow heat transfer to non-Newtonian fluids have been treated and the criterion for transition from laminar to turbulent flow for natural convection has been established. The heat transfer characteristics of non-Newtonian fluids from inelastic power-law fluids to viscoelastic second-order fluids and mildly elastic drag reducing fluids are covered. This book can serve the needs of undergraduates, graduates and industry personnel from the fields of chemical engineering, material science and engineering, mechanical engineering and polymer engineering.
Author:
Publisher:
Published: 1969
Total Pages: 736
ISBN-13:
DOWNLOAD EBOOKAuthor: D.A. Nield
Publisher: Springer Science & Business Media
Published: 2013-03-09
Total Pages: 546
ISBN-13: 1475730330
DOWNLOAD EBOOKA user-friendly introduction to convection in porous media, such as fibrous insulation, geological strata, and catalytic reactors. This is a self-contained presentation, requiring only routine classical mathematics and the basic elements of fluid mechanics and heat transfer. It will thus be of use not only to researchers and practising engineers as a review and reference, but also to graduates and others just entering the field. Applications discussed include such disparate topics as building insulation, energy storage, nuclear-waste disposal, coal and grain storage, chemical reactor engineering, groundwater flow, and stability of snow to avalanches. In this second edition the authors have added: discussions of compact heat exchangers and of tree networks; new material on external natural convection; descriptions of the effects of magnetic fields, of rotations, and of periodic heating; discussions of inclined gradients and of the solidification of alloys; and an extensive treatment of two-phase flows. An extensive list of references -- emphasising recent experimental work -- provides access to the current research literature.
Author:
Publisher:
Published:
Total Pages: 752
ISBN-13:
DOWNLOAD EBOOKAuthor: National Science Foundation (U.S.)
Publisher:
Published:
Total Pages: 728
ISBN-13:
DOWNLOAD EBOOKAuthor: M.D. Kelleher
Publisher: Elsevier
Published: 2012-12-02
Total Pages: 1002
ISBN-13: 044459860X
DOWNLOAD EBOOKThe papers contained in this volume reflect the ingenuity and originality of experimental work in the areas of fluid mechanics, heat transfer and thermodynamics. The contributors are drawn from 27 countries which indicates how well the worldwide scientific community is networked. The papers cover a broad spectrum from the experimental investigation of complex fundamental physical phenomena to the study of practical devices and applications. A uniform outline and method of presentation has been used for each paper.
Author: Mohammad Altamush Siddiqui
Publisher: Springer Nature
Published:
Total Pages: 425
ISBN-13: 9819972132
DOWNLOAD EBOOKAuthor: W. Minkowycz
Publisher: CRC Press
Published: 2018-12-13
Total Pages: 421
ISBN-13: 135146826X
DOWNLOAD EBOOKThis volume discusses the advances in numerical heat transfer modeling by applying high-performance computing resources, striking a balance between generic fundamentals, specific fundamentals, generic applications, and specific applications.