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Learn Aspen Plus in 24 Hours [Pehme köide]

  • Formaat: Paperback / softback, 208 pages, kõrgus x laius x paksus: 231x185x13 mm, kaal: 371 g, 240 Illustrations
  • Ilmumisaeg: 31-Dec-2017
  • Kirjastus: McGraw-Hill Education
  • ISBN-10: 126011645X
  • ISBN-13: 9781260116458
  • Pehme köide
  • Hind: 68,04 €*
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  • See raamat on trükist otsas, kuid me saadame teile pakkumise kasutatud raamatule.
  • Kogus:
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  • Lisa soovinimekirja
  • Formaat: Paperback / softback, 208 pages, kõrgus x laius x paksus: 231x185x13 mm, kaal: 371 g, 240 Illustrations
  • Ilmumisaeg: 31-Dec-2017
  • Kirjastus: McGraw-Hill Education
  • ISBN-10: 126011645X
  • ISBN-13: 9781260116458

This self-learning guide shows how to start using Aspen Plus to solve chemical engineering problems quickly and easily

Discover how to solve challenging chemical engineering problems with Aspen Plus—in just 24 hours, and with no prior experience. Developed at McMaster University over a seven-year period, the book features visual guides to using detailed mathematical models for a wide range of chemical process equipment, including heat exchangers, pumps, compressors, turbines, distillation columns, absorbers, strippers, and chemical reactors.

Learn Aspen Plus in 24 Hours shows, step-by-step, how to configure and use Aspen Plus v9.0 and apply its powerful features to the design, operation, and optimization of safe, profitable manufacturing facilities. You will learn how to build process models and accurately simulate those models without performing tedious calculations. Divided into 12 two-hour lessons, the guide offers downloadable Aspen Plus simulation files and visual step-by-step guides.

• Contains a valuable index that lists software icons and commands used in the book
• Features helpful and time-saving links to instructional videos and technical content
• Instructs how to integrate your simulation with other supporting software such as Aspen Capital Cost Estimator, Aspen Energy Analyzer, and Microsoft Excel
• Written by an Aspen Plus power-user and leading researcher in chemical process simulations

About This Book ix
Introduction xi
Tutorial 1 Getting Started
1(10)
Objectives
1(1)
Prerequisite Knowledge
1(1)
Why This Is Useful for Problem Solving
1(1)
Tutorial
2(9)
Tutorial 2 Physical Property Modeling
11(12)
Objectives
11(1)
Prerequisite Knowledge
11(1)
Why This Is Useful for Problem Solving
12(1)
Tutorial
12(11)
Tutorial 3 Problem Solving Tools
23(12)
Objectives
23(1)
Prerequisite Knowledge
23(1)
Why Is This Useful for Problem Solving
23(1)
Tutorial
24(11)
Tutorial 4 Heat Exchangers
35(14)
Objectives
35(1)
Prerequisite Knowledge
35(1)
Why This Is Useful for Problem Solving
35(1)
Types and Classifications of Heat Exchangers
36(2)
Tutorial
38(11)
Tutorial 5 Advanced Problem Solving Tools
49(12)
Objectives
49(1)
Prerequisite Knowledge
49(1)
Why This Is Useful for Problem Solving
49(1)
Tutorial
50(11)
Tutorial 6 Chemical Reactor Models
61(14)
Objectives
61(1)
Prerequisite Knowledge
61(1)
Why This Is Useful for Problem Solving
62(1)
Tutorial
63(12)
Tutorial 7 Equilibrium-Based Distillation Models
75(8)
Objectives
75(1)
Prerequisite Knowledge
75(1)
Why Is This Useful for Problem Solving
76(1)
Tutorial
76(7)
Tutorial 8 Rate-Based Distillation Models
83(12)
Objectives
83(1)
Prerequisite Knowledge
83(1)
Why Is This Useful for Problem Solving
84(1)
Tutorial
84(11)
Tutorial 9 Custom Models and External Control
95(10)
Objectives
95(1)
Prerequisite Knowledge
95(1)
Why Is This Useful for Problem Solving
96(1)
Tutorial
96(9)
Tutorial 10 Capital Cost Estimation
105(12)
Objectives
105(1)
Prerequisite Knowledge
105(1)
Why Is This Useful for Problem Solving
105(1)
Tutorial
106(11)
Tutorial 11 Optimal Heat Exchanger Networks
117(12)
Objectives
117(1)
Prerequisite Knowledge
117(1)
Why This Is Useful for Problem Solving
117(1)
Tutorial
118(11)
Tutorial 12 Solids Processing and Electrolyte Chemistry
129(12)
Objectives
129(1)
Prerequisite Knowledge
129(1)
Why Is This Useful for Problem Solving
129(1)
Tutorial
130(11)
Solutions 141(32)
Command Index 173(8)
Index 181
Thomas A. Adams II is an associate professor of chemical engineering at McMaster University. He serves as chair of the Systems and Control division of the Canadian Society for Chemical Engineering