Chemical Process Equipment Design

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Chemical Process Equipment Design

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  • 製本 Paperback:紙装版/ペーパーバック版/ページ数 391 p.
  • 言語 ENG
  • 商品コード 9780133804478
  • DDC分類 660

Full Description


The Concise, Easy-to-Use Guide to Designing Chemical Process Equipment and Evaluating Its PerformanceTrends such as shale-gas resource development call for a deeper understanding of chemical engineering equipment and design. Chemical Process Equipment Design complements leading texts by providing concise, focused coverage of these topics, filling a major gap in undergraduate chemical engineering education.Richard Turton and Joseph A. Shaeiwitz present relevant design equations, show how to analyze operation of existing equipment, and offer a practical methodology for designing new equipment and for solving common problems. Theoretical derivations are avoided in favor of working equations, practical computational strategies, and approximately eighty realistic worked examples. The authors identify which equation applies to each situation, and show exactly how to use it to design equipment.By the time undergraduates have worked through this material, they will be able to create preliminary designs for most process equipment found in a typical chemical plant that processes gases and/or liquids. They will also learn how to evaluate the performance of that equipment, even when operating conditions differ from the design case.Coverage includes Process fluid mechanics: designing and evaluating pumps, compressors, valves, and other piping systemsProcess heat transfer: designing and evaluating heat exchange equipmentSeparation equipment: understanding fundamental relationships underlying separation devices, designing them, and assessing their performanceReactors: basic equations and specific issues relating to chemical reactor equipment design and performanceOther equipment: preliminary analysis and design for pressure vessels, simple phase-separators (knock-out drums), and steam ejectorsThis guide draws on fifty years of innovative chemical engineering instruction at West Virginia University and elsewhere. It complements popular undergraduate textbooks for practical courses in fluid mechanics, heat transfer, reactors, or separations; supports senior design courses; and can serve as a core title in courses on equipment design.Register your product at informit.com/register for convenient access to downloads, updates, and corrections as they become available.

Contents

Preface xiAcknowledgments xiiiAbout the Authors xvChapter 1: Process Fluid Mechanics 11.0 Introduction 11.1 Basic Relationships in Fluid Mechanics 11.2 Fluid Flow Equipment 71.3 Frictional Pipe Flow 131.4 Other Flow Situations 281.5 Performance of Fluid Flow Equipment 41Chapter 2: Process Heat Transfer 772.0 Introduction 772.1 Basic Heat-Exchanger Relationships 772.2 Heat-Exchange Equipment Design and Characteristics 842.3 LMTD Correction Factor for Multiple Shell and Tube Passes 952.4 Overall Heat Transfer Coefficients-Resistances in Series 1042.5 Estimation of Individual Heat Transfer Coefficients and Fouling Resistances 1062.6 Extended Surfaces 1352.7 Algorithm and Worked Examples for the Design of Heat Exchangers 1442.8 Performance Problems 154Chapter 3: Separation Equipment 1853.0 Introduction 1853.1 Basic Relationships in Separations 1863.2 Illustrative Diagrams 1933.3 Equipment 2213.4 Extraction Equipment 2513.5 Gas Permeation Membrane Separations 253Chapter 4: Reactors 2754.0 Introduction 2754.1 Basic Relationships 2764.2 Equipment Design for Nonisothermal Conditions 2944.3 Performance Problems 317Chapter 5: Other Equipment 3315.0 Introduction 3315.1 Pressure Vessels 3325.2 Knockout Drums or Simple Phase Separators 3405.3 Steam Ejectors 365Index 383

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