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Process Modeling and Simulation for Chemical Engineers Theory and Practice von Upreti, Simant R. (eBook)

  • Erscheinungsdatum: 05.04.2017
  • Verlag: Wiley
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Process Modeling and Simulation for Chemical Engineers

This book provides a rigorous treatment of the fundamental concepts and techniques involved in process modeling and simulation. The book allows the reader to: (i) Get a solid grasp of 'under-the-hood' mathematical results (ii) Develop models of sophisticated processes (iii) Transform models to different geometries and domains as appropriate (iv) Utilize various model simplification techniques (v) Learn simple and effective computational methods for model simulation (vi) Intensify the effectiveness of their research Modeling and Simulation for Chemical Engineers: Theory and Practice begins with an introduction to the terminology of process modeling and simulation. Chapters 2 and 3 cover fundamental and constitutive relations, while Chapter 4 on model formulation builds on these relations. Chapters 5 and 6 introduce the advanced techniques of model transformation and simplification. Chapter 7 deals with model simulation, and the final chapter reviews important mathematical concepts. Presented in a methodical, systematic way, this book is suitable as a self-study guide or as a graduate reference, and includes examples, schematics and diagrams to enrich understanding. End of chapter problems (with solutions and computer software available online) are designed to further stimulate readers to apply the newly-learned concepts. End of chapter problems (with solutions and computer software available online a href='are designed to further stimulate readers to apply the newly learned concepts. Simant Ranjan Upreti, Department of Chemical Engineering, Ryerson University, Toronto, Canada

Produktinformationen

    Format: ePUB
    Kopierschutz: AdobeDRM
    Seitenzahl: 368
    Erscheinungsdatum: 05.04.2017
    Sprache: Englisch
    ISBN: 9781118914663
    Verlag: Wiley
    Größe: 16063 kBytes
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Process Modeling and Simulation for Chemical Engineers

Notation

Symbol Description Units a surface area per unit volume m-1 A m area of moving surfaces m2 A p area of a port of flow m2 A area m2 A area vector m2 c average concentration of a mixture kmol m-3 ci concentration of the i th species kmol m-3 specific heat capacity of mixture J kg-1K-1 of the i th species in pure form J kg-1K-1 molar specific heat capacity of the i th species in a mixture J kmol-1K-1 partial specific heat capacity of the i th species in a mixture J kmol-1K-1 d x differential change in x of x D diffusivity of species m2 s-1 D AB binary diffusivity of A in a mixture of A and B m2 s-1 D matrix of multicomponent diffusivities m2 s-1 ei the i th component of energy flux J m-2 s-1 E sum of the squared errors in y in a population of y 2 E total energy of a system J E activation energy of reaction J kmol-1 energy per unit mass J kg-1 fi fugacity of the i th species Pa F volumetric flow rate m3 s-1 f i mass flux of the i th species kg m-2 s-1 f overall mass flux of a mixture kg m-2 s-1 F i molar flux of the i th species kmol m-2 s-1 F overall molar flux of a mixture kmol m-2 s-1 F force vector N G Gibbs free energy J Gibbs free energy per unit mass of the i th species J kg-1 g gravity, 9.806 65 m s-2 h heat transfer coefficient W m-2 K-1 H enthalpy J enthalpy per unit mass J kg-1 Hi Henry's law constant for the i th species Pa enthalpy per unit mass of the i th species J kg-1 partial specific enthalpy of the i th species in a mixture J kg-1 partial molar enthalpy of the i th species in a mixture J kmol-1 molar en

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