Process Engineering and Design Using Visual Basic

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Hardback
$149.95
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ISBN 9781420045420
Cat# 45423
 

Features

  • Explains the fundamentals of process design and development underlying the use of software tools
  • Enables you to verify and evaluate the accuracy of software results to make sure your design is on track
  • Includes nine ready-to-use programs in Visual Basicâ„¢ and explains the principles on which they are built
  • Identifies the important issues in process design and the best procedures to resolve them
  • Builds a practical and intuitive understanding of design guidelines and how to apply them to the use of software tools
  • Summary

    Software tools are a great aid to process engineers, but too much dependence on such tools can often lead to inappropriate and suboptimal designs. Reliance on software is also a hindrance without a firm understanding of the principles underlying its operation, since users are still responsible for devising the design.

    In Process Engineering and Design Using Visual Basic, Arun K. Datta provides a unique and versatile suite of programs along with simultaneous development of the underlying concepts, principles, and mathematics. Each chapter details the theory and techniques that provide the basis for design and engineering software and then showcases the development and utility of programs developed using the material outlined in the chapter. This all-inclusive guide works systematically from basic mathematics to fluid mechanics, separators, overpressure protection, and glycol dehydration, providing basic design guidelines based on international codes. Worked examples demonstrate the utility of each program, while the author also explains problems and limitations associated with the simulations.

    After reading this book you will be able to immediately put these programs into action and have total confidence in the result, regardless of your level of experience. All nine programs are available on the companion CD-ROM, including a useful unit conversion tool.

    Table of Contents

    BASIC MATHEMATICS
    Introduction
    Physical Constants
    Mensuration
    Algebra
    Trigonometry
    Analytical Geometry
    Calculus
    Differential Equations
    Partial Differential Equations
    Numerical Analysis
    Equation of State
    Unit Conversions
    Programming
    References/Further Reading
    FLUID MECHANICS
    Introduction
    Bernoulli's Theorem
    Flow Measurements
    Frictional Pressure Drop
    Two-K Method
    Hydraulics-General Guidelines
    Hydraulics-Compressible Fluids
    Heat Loss
    Hydraulics-Two-Phase Flow
    Programming
    Nomenclature
    Greek Characters
    References
    SEPARATOR
    Introduction
    General Principles of Separation
    Vertical versus Horizontal Separators
    Design of a Gas-Liquid Separator
    Design of Liquid-Liquid Separators
    Mist Eliminator
    General Dimensions and Setting of Levels
    Separator Internals
    Separator Control
    High Performance Separator
    Design Parameters
    Separator Program
    Nomenclature
    Greek Characters
    References
    OVERPRESSURE PROTECTION
    Introduction
    Definition
    Type of Pressure Relief Valves
    Selection of Pressure Relief Valves
    PRV Installation and Line Sizing
    Contingency Quantification
    Sizing Procedure
    SIL Analysis
    Programming
    Nomenclature
    Greek Characters
    References
    GLYCOL DEHYDRATION
    Introduction
    Basic Scheme
    Physical Properties
    Design Aspects
    Programming
    References
    INDEX

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