Energy Optimization in Process Systems and Fuel Cells

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Author(s): Stanislaw Sieniutycz and Jacek Jezowski (Auth.)

Language: English
Pages: 800
Tags: Химия и химическая промышленность;Электрохимия;Химические источники тока;Химия и технология топливных элементов;

Content:
Front matter, Pages i-iii
Copyright, Page iv
Preface, Pages xi-xvii
Acknowledgments, Page xix
1 - Brief review of static optimization methods, Pages 1-43
2 - Dynamic optimization problems, Pages 45-84
3 - Energy limits for thermal engines and heat pumps at steady states, Pages 85-125
4 - Hamiltonian optimization of imperfect cascades, Pages 127-165
5 - Maximum power from solar energy, Pages 167-213
6 - Hamilton–Jacobi–Bellman theory of energy systems, Pages 215-236
7 - Numerical optimization in allocation, storage and recovery of thermal energy and resources, Pages 237-269
8 - Optimal control of separation processes, Pages 271-320
9 - Optimal decisions for chemical reactors, Pages 321-371
10 - Fuel cells and limiting performance of electrochemobiological systems, Pages 373-428
11 - Systems theory in thermal and chemical engineering, Pages 429-464
12 - Heat integration within process integration, Pages 465-474
13 - Maximum heat recovery and its consequences for process system design, Pages 475-497
14 - Targeting and supertargeting in heat exchanger network design, Pages 499-505
15 - Minimum utility cost (MUC) target by optimization approaches, Pages 507-531
16 - Minimum number of units (MNU) and minimum total surface area (MTA) targets, Pages 533-570
17 - Simultaneous HEN targeting for total annual cost, Pages 571-583
18 - Heat exchanger network synthesis, Pages 585-620
19 - Heat exchanger network retrofit, Pages 621-650
20 - Approaches to water network design, Pages 651-695
Reference, Pages 697-771
Glossary, Pages 773-782
Index, Pages 783-800