Principles of Waste Heat Recovery

Principles of Waste Heat Recovery
Author: Robert Goldstick,Albert Thumann
Publsiher: Unknown
Total Pages: 286
Release: 1986
Genre: Heat
ISBN: UCAL:B4364539

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Waste Heat Recovery Principles And Industrial Applications

Waste Heat Recovery  Principles And Industrial Applications
Author: Chirla Chandra Sekhara Reddy,Gade Pandu Rangaiah
Publsiher: World Scientific
Total Pages: 882
Release: 2022-04-22
Genre: Science
ISBN: 9789811248412

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This book presents a comprehensive coverage of fundamentals, latest technologies and industrial applications of Waste Heat Recovery (WHR) in process industries. Simple and effective WHR techniques are illustrated with industrial examples, to help readers to identify, calculate and develop heat recovery potential in their processes. Key benefits of WHR projects, which are useful for developing successful WHR business cases, are demonstrated. Special emphasis is given towards major technical risks and mitigation plans, for implementing sound WHR projects. Techniques for reaping benefits of WHR projects for longer periods are also outlined. Applying these techniques with an understanding of the principles explained in this book, and taking cues from the examples and suggestions, the reader will be able to realise sustained benefits in their process.Solution manual is provided for free to instructors who adopt this textbook. Please send your request to [email protected].

Principles of Waste Heat Recovery

Principles of Waste Heat Recovery
Author: Robert Goldstick,Albert Thumann
Publsiher: Fairmont Press
Total Pages: 567
Release: 1986
Genre: Electronic Book
ISBN: 0137106254

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The Waste Heat Recovery Handbook

The Waste Heat Recovery Handbook
Author: Robert Goldstick,Albert Thumann
Publsiher: Unknown
Total Pages: 210
Release: 1983
Genre: Technology & Engineering
ISBN: UOM:39015004526052

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Large amounts of heat generated in commercial and industrial processes are "dumped" into the environment, even though much of this heat could be utilized for useful and economically beneficial purposes.

Waste Heat Recovery in Process Industries

Waste Heat Recovery in Process Industries
Author: Hussam Jouhara
Publsiher: John Wiley & Sons
Total Pages: 290
Release: 2022-05-31
Genre: Technology & Engineering
ISBN: 9783527348565

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Explore modern waste heat recovery technology across a variety of industries In Waste Heat Recovery in Process Industries, esteemed thermal engineer Hussam Jouhara delivers an organized and comprehensive exploration of waste heat recovery systems with a focus on industrial applications in different temperature ranges. The author describes various waste heat recovery systems, like heat exchangers, waste heat boilers, air preheaters, direct electrical conversion devices, and thermal storage. The book also offers discussions of the technologies and applications relevant to different temperature ranges present in industrial settings along with revealing case studies from various industries. Waste Heat Recovery in Process Industries examines a variety of industries, from steel to ceramics, chemicals, and food, and how plants operating in these sectors can use waste heat to improve their energy efficiency, reduce energy costs, and minimize their carbon footprint. The book also offers: A thorough introduction to waste heat recovery systems, including recuperative and regenerative burners, heat exchangers, waste heat boilers, air preheaters, and heat pumps Comprehensive explorations of low temperature applications, below 100°C, including advantages and drawbacks, as well as illustrative case studies Practical discussions of medium temperature applications, between 100°C and 400°C, including case studies In-depth examination of high temperature applications, above 400°C, including several case studies Perfect for chemical, mechanical, process, and power engineers, Waste Heat Recovery in Process Industries is also an ideal resource for professionals working in the chemical, metal processing, pharmaceutical, and food industries.

Waste Heat Management Guidebook

Waste Heat Management Guidebook
Author: Kenneth G. Kreider,Michael Brewer McNeil
Publsiher: Unknown
Total Pages: 212
Release: 1977
Genre: Heat recovery
ISBN: UOM:39015010553504

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Organic Rankine Cycle Technology for Heat Recovery

Organic Rankine Cycle Technology for Heat Recovery
Author: Enhua Wang
Publsiher: BoD – Books on Demand
Total Pages: 202
Release: 2018-11-07
Genre: Science
ISBN: 9781789843477

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This book on organic Rankine cycle technology presents nine chapters on research activities covering the wide range of current issues on the organic Rankine cycle. The first section deals with working fluid selection and component design. The second section is related to dynamic modeling, starting from internal combustion engines to industrial power plants. The third section discusses industrial applications of waste heat recovery, including internal combustion engines, LNG, and waste water. A comprehensive analysis of the technology and application of organic Rankine cycle systems is beyond the aim of the book. However, the content of this volume can be useful for scientists and students to broaden their knowledge of technologies and applications of organic Rankine cycle systems.

On the Improvement of Combustion Engines with Waste Heat Recovery Systems in Mobile Applications

On the Improvement of Combustion Engines with Waste Heat Recovery Systems in Mobile Applications
Author: Thomas Matousek
Publsiher: Logos Verlag Berlin GmbH
Total Pages: 132
Release: 2019-08-10
Genre: Science
ISBN: 9783832549565

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This dissertation deals with the experimental and simulative investigation of waste heat recovery from combustion engine exhaust gas in passenger car applications. The focus of the investigations lies on the thermodynamic cycle according to Rankine. The boundary conditions of combustion engines and the limitations of an automobile cause new operating conditions and system operating parameters for Rankine-systems, which will be discussed within this work. The system operating parameters were judged based on their potential to improve the efficiency of a running system, by setting the optimal values for each individual situation. Alternative circuit variants were investigated alongside of the basic configuration, which allowed additional heat input into the system and thereby increase the power output of the Rankine-system. Another operative influence on a waste heat recovery system that was analyzed was the importance of engine operating parameters. This on one hand lays groundwork and on the other hand displays the potentials of different system combinations. The knowledge gained during stationary operation is transferred to dynamic operation in the following. Cold start was chosen as the most important variant of dynamic operation. Results from measurements at starting temperatures down to -10C are presented. These include the first published measurements of temperature and power output for such scenarios. The basics of the behavior of a Rankine-system in cold start are extended by the impact of system operating parameters and circuit configurations. Possible synergies through different kinds of connection from the condenser to the coolant system were investigated as a completing facet of the holistic system view. The target of these investigations was to identify potentials for improvements in the cold start of the automobile by utilizing the heat that is available at the condenser.