Thermal Conductivity 28

Thermal Conductivity 28

Author: Ralph B. Dinwiddie

Publisher: DEStech Publications, Inc

Published: 2006

Total Pages: 858

ISBN-13: 1932078592

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This book presents the most current research on heat flow in materials, ranging from metals to newer materials such as thin films and nanowires.


Thermal Conductivity 14

Thermal Conductivity 14

Author: P. Klemens

Publisher: Springer

Published: 2013-11-11

Total Pages: 571

ISBN-13: 148993751X

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It was seven years ago this month when I had the pleasure of writing the Foreword to the Proceedings of the Eighth Conference on Thermal Conductivity hosted by TPRC/ Purdue University in 1968. Since then this Conference has developed to the point where one can say it has just entered a new phase. At its meeting in June 1975, the Board of Governors of the International Thermal Conductivity Conferences passed a resolution which formalizes two main policies that were felt to be desirable for a number of years, A key item of the resolution was for CINDAS/Purdue University to become the permanent Sponsor of the Conferences and in this capacity assist the Conferences in all matters which will result in the effective implementation of its goals and mission. In short, CINDAS will serve as a home base for the Conferences thus providing continuity and a permanent point of contact. CINDAS/Purdue University is pleased to accept this respons ibility as it is well within its mission to promote the advancement and dissemination of knowledge on thermophysica! properties of matter. A second important aspect of the Conference resolution was the establishment of a policy to publish the Proceedings of future conferences on a continuing and uniform basis effective with this, the Fourteenth Conference.


Thermal Properties and Temperature-Related Behavior of Rock/Fluid Systems

Thermal Properties and Temperature-Related Behavior of Rock/Fluid Systems

Author: W.H. Somerton

Publisher: Elsevier

Published: 1992-03-02

Total Pages: 267

ISBN-13: 0080868959

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This book brings together for the first time the results of research on the thermal properties and temperature-related behavior of rocks with their contained fluids, under subsurface environmental conditions. These data are of increasing importance with increased application of underground processes involving high temperature and, in some cases, low temperature environments. Some of the important processes are described in which thermal data are needed. Chapters deal with thermal properties of rocks, including heat capacities, thermal conductivities and thermal diffusivities under conditions simulating subsurface environments. Discussion about the difficulty in measuring thermal properties of rock/fluid systems is included along with newly-developed models for predicting thermal properties from more-easily measured properties. The effects of thermal reactions in rocks, differential thermal expansion, and thermal alterations are discussed in separate chapters. The effects of temperature on rock properties, as distinct from the irreversible effects of heating, are reviewed. Lastly the book deals with wellbore applications of thermal and high-temperature behavior of rocks and methods of deducing thermal properties from geophysical logs run in boreholes. Appendices include thermal units conversion factors and thermal properties of some typical reservoir rocks and fluids.


Thermal Conductivity

Thermal Conductivity

Author: Daniel R. Flynn

Publisher:

Published: 1968

Total Pages: 832

ISBN-13:

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Contains the text or abstracts of ninety papers contributed to the conference.


Handbook of Thermal Conductivity of Liquids and Gases

Handbook of Thermal Conductivity of Liquids and Gases

Author: Natan B. Vargaftik

Publisher: CRC Press

Published: 2020-11-25

Total Pages: 361

ISBN-13: 1000111652

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Handbook of Thermal Conductivity of Liquids and Gases covers practically all of the data available on the thermalconductivity of pure liquids and gases. Thermal conductivity data included in the book is based on original experimental measurements and correlations recommended or adopted as a standard by the National Standard Reference Data Service of the Russian Federation. New tabulations of thermal conductivity data on high-molecular organic fluids and the alkali metals in both liquid and gaseous states are featured as well. This book will be an important reference for all researchers working in thermodynamics.


Thermal Conductivity

Thermal Conductivity

Author: Terry M. Tritt

Publisher: Springer Science & Business Media

Published: 2006-10-03

Total Pages: 306

ISBN-13: 038726017X

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It has been almost thirty years since the publication of a book that is entirely dedicated to the theory, description, characterization and measurement of the thermal conductivity of solids. The recent discovery of new materials which possess more complex crystal structures and thus more complicated phonon scattering mechanisms have brought innovative challenges to the theory and experimental understanding of these new materials. With the development of new and novel solid materials and new measurement techniques, this book will serve as a current and extensive resource to the next generation researchers in the field of thermal conductivity. This book is a valuable resource for research groups and special topics courses (8-10 students), for 1st or 2nd year graduate level courses in Thermal Properties of Solids, special topics courses in Thermal Conductivity, Superconductors and Magnetic Materials, and to researchers in Thermoelectrics, Thermal Barrier Materials and Solid State Physics.


Thermal Properties of Nanofluids

Thermal Properties of Nanofluids

Author: Taher Armaghani

Publisher: CRC Press

Published: 2024-11-13

Total Pages: 330

ISBN-13: 1040145809

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Thermal Properties of Nanofluids presents emerging prospects for understanding and controlling thermophysical properties at the nanoscale. It covers a comprehensive study of recent progress concerning these properties from the solid state to colloids and, above all, a different look at the effect of temperature on nanofluids’ thermal conducting. Introducing various techniques for measuring solid-state properties, including thermal conductivity, thermal diffusivity, and specific heat capacity, this book presents modeling approaches developed for predicting these properties by molecular dynamic (MD) simulations. It discusses the main factors that affect solid-state properties, such as grain size, grain boundaries, surface interactions, doping, and temperature, and the effects of all these factors. This book will interest industry professionals and academic researchers studying the thermophysical behavior of nanomaterials and heat transfer applications of nanofluids. It will serve graduate engineering students studying advanced fluid mechanics, heat transfer, and nanomaterials.