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High-pressure fluid phase equilibria: phenomenology and computation

The book begins with an overview of the phase diagrams of fluid mixtures (fluid = liquid, gas, or supercritical state), which can show an astonishing variety when elevated pressures are taken into account; phenomena like retrograde condensation (single and double) and azeotropy (normal and double) a...

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Detalles Bibliográficos
Autores principales: Deiters, Ulrich K, Kraska, Thomas
Lenguaje:eng
Publicado: Elsevier Science 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/2278731
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author Deiters, Ulrich K
Kraska, Thomas
author_facet Deiters, Ulrich K
Kraska, Thomas
author_sort Deiters, Ulrich K
collection CERN
description The book begins with an overview of the phase diagrams of fluid mixtures (fluid = liquid, gas, or supercritical state), which can show an astonishing variety when elevated pressures are taken into account; phenomena like retrograde condensation (single and double) and azeotropy (normal and double) are discussed. It then gives an introduction into the relevant thermodynamic equations for fluid mixtures, including some that are rarely found in modern textbooks, and shows how they can they be used to compute phase diagrams and related properties. This chapter gives a consistent and axiomatic approach to fluid thermodynamics; it avoids using activity coefficients. Further chapters are dedicated to solid-fluid phase equilibria and global phase diagrams (systematic search for phase diagram classes). The appendix contains numerical algorithms needed for the computations. The book thus enables the reader to create or improve computer programs for the calculation of fluid phase diagrams. introduces phase diagram classes, how to recognize them and identify their characteristic features presents rational nomenclature of binary fluid phase diagrams includes problems and solutions for self-testing, exercises or seminars.
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spelling cern-22787312021-04-21T19:07:01Zhttp://cds.cern.ch/record/2278731engDeiters, Ulrich KKraska, ThomasHigh-pressure fluid phase equilibria: phenomenology and computationOther Fields of PhysicsThe book begins with an overview of the phase diagrams of fluid mixtures (fluid = liquid, gas, or supercritical state), which can show an astonishing variety when elevated pressures are taken into account; phenomena like retrograde condensation (single and double) and azeotropy (normal and double) are discussed. It then gives an introduction into the relevant thermodynamic equations for fluid mixtures, including some that are rarely found in modern textbooks, and shows how they can they be used to compute phase diagrams and related properties. This chapter gives a consistent and axiomatic approach to fluid thermodynamics; it avoids using activity coefficients. Further chapters are dedicated to solid-fluid phase equilibria and global phase diagrams (systematic search for phase diagram classes). The appendix contains numerical algorithms needed for the computations. The book thus enables the reader to create or improve computer programs for the calculation of fluid phase diagrams. introduces phase diagram classes, how to recognize them and identify their characteristic features presents rational nomenclature of binary fluid phase diagrams includes problems and solutions for self-testing, exercises or seminars.Elsevier Scienceoai:cds.cern.ch:22787312012
spellingShingle Other Fields of Physics
Deiters, Ulrich K
Kraska, Thomas
High-pressure fluid phase equilibria: phenomenology and computation
title High-pressure fluid phase equilibria: phenomenology and computation
title_full High-pressure fluid phase equilibria: phenomenology and computation
title_fullStr High-pressure fluid phase equilibria: phenomenology and computation
title_full_unstemmed High-pressure fluid phase equilibria: phenomenology and computation
title_short High-pressure fluid phase equilibria: phenomenology and computation
title_sort high-pressure fluid phase equilibria: phenomenology and computation
topic Other Fields of Physics
url http://cds.cern.ch/record/2278731
work_keys_str_mv AT deitersulrichk highpressurefluidphaseequilibriaphenomenologyandcomputation
AT kraskathomas highpressurefluidphaseequilibriaphenomenologyandcomputation