Modelling in Transport Phenomena
eBook - PDF

Modelling in Transport Phenomena

  1. 605 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Modelling in Transport Phenomena

About this book

Modelling in Transport Phenomena: A Conceptual Approach aims to show students how to translate the inventory rate equation into mathematical terms at both the macroscopic and microscopic levels. The emphasis is on obtaining the equation representing a physical phenomenon and its interpretation. The book begins with a discussion of basic concepts and their characteristics. It then explains the terms appearing in the inventory rate equation, including ""rate of input"" and ""rate of output."" The rate of generation in transport of mass, momentum, and energy is also described. Subsequent chapters detail the application of inventory rate equations at the macroscopic and microscopic levels. This book is intended as an undergraduate textbook for an introductory Transport Phenomena course in the junior year. It can also be used in unit operations courses in conjunction with standard textbooks. Although it is written for students majoring in chemical engineering, it can also serve as a reference or supplementary text in environmental, mechanical, petroleum, and civil engineering courses.

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Yes, you can access Modelling in Transport Phenomena by Ismail Tosun in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Chemistry. We have over one million books available in our catalogue for you to explore.

Information

Table of contents

  1. Front Cover
  2. Modelling in Transport Phenomena: A Conceptual Approach
  3. Copyright Page
  4. Contents
  5. Preface
  6. Chapter 1. Introduction
  7. Chapter 2. Molecular and Convective Transport
  8. Chapter 3. Interphase Transport and Transfer Coefficients
  9. Chapter 4. Evaluation of Transfer Coefficients: Engineering Correlations
  10. Chapter 5. Rate of Generation in Momentum, Energy and Mass Transfer
  11. Chapter 6. Steady-State Macroscopic Balances
  12. Chapter 7. Unsteady-State Macroscopic Balances
  13. Chapter 8. Steady-State Microscopic Balances Without Generation
  14. Chapter 9. Steady-State Microscopic Balances With Generation
  15. Chapter 10. Unsteady-State Microscopic Balances Without Generation
  16. Chapter 11. Unsteady-State Microscopic Balances With Generation
  17. Chapter A. Mathematical Preliminaries
  18. Chapter B. Solutions of Differential Equations
  19. Chapter C. Flux Expressions
  20. Chapter D. Physical Properties
  21. Chapter E. Constants and Conversion Factors
  22. Index