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Heat Transfer and Fluid Dynamics of Near Critical Fluids. University of Bristol, 1968. A Symposium Arranged by the Thermodynamics and Fluid Mechanics Group of the Institution of Mechanical Engineers

Heat Transfer and Fluid Dynamics of Near Critical Fluids. University of Bristol, 1968. A Symposium Arranged by the Thermodynamics and Fluid Mechanics Group of the Institution of Mechanical Engineers
Author: Institution of Mechanical Engineers. Thermodynamics and Fluid Mechanics Group
Publisher:
Total Pages: 71
Release: 1968
Genre:
ISBN:

Download Heat Transfer and Fluid Dynamics of Near Critical Fluids. University of Bristol, 1968. A Symposium Arranged by the Thermodynamics and Fluid Mechanics Group of the Institution of Mechanical Engineers Book in PDF, ePub and Kindle


Heat Transfer and Fluid Dynamics of Near Critical Fluids

Heat Transfer and Fluid Dynamics of Near Critical Fluids
Author: Institution of Mechanical Engineers (Great Britain). Thermodynamics and Fluid Mechanics Group
Publisher:
Total Pages: 88
Release: 1968
Genre: Critical point
ISBN:

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Heat Transfers and Related Effects in Supercritical Fluids

Heat Transfers and Related Effects in Supercritical Fluids
Author: Bernard Zappoli
Publisher: Springer
Total Pages: 457
Release: 2014-11-17
Genre: Technology & Engineering
ISBN: 9401791872

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This book investigates the unique hydrodynamics and heat transfer problems that are encountered in the vicinity of the critical point of fluids. Emphasis is given on weightlessness conditions, gravity effects and thermovibrational phenomena. Near their critical point, fluids indeed obey universal behavior and become very compressible and expandable. Their comportment, when gravity effects are suppressed, becomes quite unusual. The problems that are treated in this book are of interest to students and researchers interested in the original behavior of near-critical fluids as well as to engineers that have to manage supercritical fluids. A special chapter is dedicated to the present knowledge of critical point phenomena. Specific data for many fluids are provided, ranging from cryogenics (hydrogen) to high temperature (water). Basic information in statistical mechanics, mathematics and measurement techniques is also included. The basic concepts of fluid mechanics are given for the non-specialists to be able to read the parts he is interested in. Asymptotic theory of heat transfer by thermoacoustic processes is provided with enough details for PhD students or researchers and engineers to begin in the field. Key spaces are described in details, with many comparisons between theory and experiments to illustrate the topics.


Handbook of Research on Advancements in Supercritical Fluids Applications for Sustainable Energy Systems

Handbook of Research on Advancements in Supercritical Fluids Applications for Sustainable Energy Systems
Author: Chen, Lin
Publisher: IGI Global
Total Pages: 821
Release: 2020-08-28
Genre: Technology & Engineering
ISBN: 1799857980

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Supercritical fluids are increasingly being used in energy conversion and fluid dynamics studies for energy-related systems and applications. These new applications are contributing to both the increase of energy efficiency as well as greenhouse gas reduction. Such research is critical for scientific advancement and industrial innovations that can support environmentally friendly strategies for sustainable energy systems. The Handbook of Research on Advancements in Supercritical Fluids Applications for Sustainable Energy Systems is a comprehensive two-volume reference that covers the most recent and challenging issues and outlooks for the applications and innovations of supercritical fluids. The book first converts basic thermo-dynamic behaviors and “abnormal” properties from a thermophysical aspect, then basic heat transfer and flow properties, recent new findings of its physical aspect and indications, chemical engineering properties, micro-nano-scale phenomena, and transient behaviors in fast and critical environments. It is ideal for engineers, energy companies, environmentalists, researchers, academicians, and students studying supercritical fluids and their applications for creating sustainable energy systems.