Advances in Heat Transfer
Author:
Publisher: Academic Press
Published: 1987-08-24
Total Pages: 383
ISBN-13: 0080575722
DOWNLOAD EBOOKAdvances in Heat Transfer
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Author:
Publisher: Academic Press
Published: 1987-08-24
Total Pages: 383
ISBN-13: 0080575722
DOWNLOAD EBOOKAdvances in Heat Transfer
Author: L S Tong
Publisher: Routledge
Published: 2018-05-04
Total Pages: 394
ISBN-13: 1351463365
DOWNLOAD EBOOKCompletely updated, this graduate text describes the current state of boiling heat transfer and two-phase flow, in terms through which students can attain a consistent understanding. Prediction of real or potential boiling heat transfer behaviour, both in steady and transient states, is covered to aid engineering design of reliable and effective systems.
Author: Geoffrey Hewitt
Publisher: Elsevier
Published: 2013-10-22
Total Pages: 327
ISBN-13: 1483285235
DOWNLOAD EBOOKAnnular Two-Phase Flow presents the wide range of industrial applications of annular two-phase flow regimes. This book discusses the fluid dynamics and heat transfer aspects of the flow pattern. Organized into 12 chapters, this book begins with an overview of the classification of the various types of interface distribution observed in practice. This text then examines the various regimes of two-phase flow with emphasis on the regions of occurrence of the annular flow regime. Other chapters consider the single momentum and energy balances, which illustrate the differences and analogies between single- and two-phase flows. This book discusses as well the simple modes for annular flow with consideration to the calculation of the profile of shear stress in the liquid film. The final chapter deals with the techniques that are developed for the measurement of flow pattern, entrainment, and film thickness. This book is a valuable resource for chemical engineers.
Author: Konstantin Volkov
Publisher: BoD – Books on Demand
Published: 2018-06-27
Total Pages: 372
ISBN-13: 1789232643
DOWNLOAD EBOOKThe book focuses on new analytical, experimental, and computational developments in the field of research of heat and mass transfer phenomena. The generation, conversion, use, and exchange of thermal energy between physical systems are considered. Various mechanisms of heat transfer such as thermal conduction, thermal convection, thermal radiation, and transfer of energy by phase changes are presented. Theory and fundamental research in heat and mass transfer, numerical simulations and algorithms, experimental techniques, and measurements as they applied to all kinds of applied and emerging problems are covered.
Author:
Publisher:
Published: 1976
Total Pages: 1118
ISBN-13:
DOWNLOAD EBOOKAuthor: Suvanjan Bhattacharyya
Publisher: BoD – Books on Demand
Published: 2020-12-02
Total Pages: 204
ISBN-13: 1789851777
DOWNLOAD EBOOKA direct solution of the heat conduction equation with prescribed initial and boundary conditions yields temperature distribution inside a specimen. The direct solution is mathematically considered as a well-posed one because the solution exists, is unique, and continuously depends on input data. The estimation of unknown parameters from the measured temperature data is known as the inverse problem of heat conduction. An error in temperature measurement, thermal time lagging, thermocouple-cavity, or signal noise data makes stability a problem in the estimation of unknown parameters. The solution of the inverse problem can be obtained by employing the gradient or non-gradient based inverse algorithm. The aim of this book is to analyze the inverse problem and heat exchanger applications in the fields of aerospace, mechanical, applied mechanics, environment sciences, and engineering.
Author: Guang-Jyh Hwang
Publisher: CRC Press
Published: 1989-08-01
Total Pages: 822
ISBN-13: 9780891168881
DOWNLOAD EBOOKA collection of research papers into transport phenomena in thermal control, closely related to several important aspects of cooling technology. Articles provide overviews of current advances and details of individual technologies including electronic and turbine cooling and Marangoni convection.
Author: Satwindar S. Sadhal
Publisher: Springer Science & Business Media
Published: 2012-12-06
Total Pages: 528
ISBN-13: 1461240220
DOWNLOAD EBOOKFluid flows that transfer heat and mass often involve drops and bubbles, particularly if there are changes of phase in the fluid in the formation or condensation of steam, for example. Such flows pose problems for the chemical and mechanical engineer significantly different from those posed by single-phase flows. This book reviews the current state of the field and will serve as a reference for researchers, engineers, teachers, and students concerned with transport phenomena. It begins with a review of the basics of fluid flow and a discussion of the shapes and sizes of fluid particles and the factors that determine these. The discussion then turns to flows at low Reynolds numbers, including effects due to phase changes or to large radial inertia. Flows at intermediate and high Reynolds numbers are treated from a numerical perspective, with reference to experimental results. The next chapter considers the effects of solid walls on fluid particles, treating both the statics and dynamics of the particle-wall interaction and the effects of phase changes at a solid wall. This is followed by a discussion of the formation and breakup of drops and bubbles, both with and without phase changes. The last two chapters discuss compound drops and bubbles, primarily in three-phase systems, and special topics, such as transport in an electric field.
Author:
Publisher:
Published: 1973
Total Pages: 528
ISBN-13:
DOWNLOAD EBOOKAuthor: S.G. Kandlikar
Publisher: Routledge
Published: 2019-01-22
Total Pages: 802
ISBN-13: 135144218X
DOWNLOAD EBOOKProvides a comprehensive coverage of the basic phenomena. It contains twenty-five chapters which cover different aspects of boiling and condensation. First the specific topic or phenomenon is described, followed by a brief survey of previous work, a phenomenological model based on current understanding, and finally a set of recommended design equa