This textbook presents the essential scientific principles of thermodynamics in a detailed and well-structured manner for practice-oriented teaching. It conveys analytically reliable knowledge with a view to engineering application and provides the key to a quick understanding of e.g. thermal machines, heat transfer, humid air and combustion. The present English edition - in comparison to earlier German editions - has been extended to include aspects of fluid mechanics, dynamics of ideal gases and chemical thermodynamics.
Les mer
This textbook presents the essential scientific principles of thermodynamics in a detailed and well-structured manner for practice-oriented teaching. The present English edition - in comparison to earlier German editions - has been extended to include aspects of fluid mechanics, dynamics of ideal gases and chemical thermodynamics.
Les mer
Basic Thermodynamic Terms.- The First Law of Thermodynamics.- The Second Law of Thermodynamics.- Ideal Gases.- Real Gases and Vapors.- Thermal Machines.- Cyclic Processes.- Exergy.- Heat Transfer.- Humid Air.- Combustion.- Chemical Thermodynamics.- Appendix.
Les mer
This textbook presents the essential scientific principles of thermodynamics in a detailed and well-structured manner for practice-oriented teaching. It conveys analytically reliable knowledge with a view to engineering application and provides the key to a quick understanding of e.g. thermal machines, heat transfer, humid air and combustion. The present English edition - in comparison to earlier German editions - has been extended to include aspects of fluid mechanics, dynamics of ideal gases and chemical thermodynamics.The contentsBasic thermodynamic terms - The first law of thermodynamics - The second law of thermodynamics - Ideal gases - Real gases and vapors - Thermal machines - Cyclic processes - Exergy - Heat transfer - Humid air - Combustion - Chemical thermodynamics - AppendixThe target groupsStudents of mechanical engineering, power engineering, environmental engineering, process engineering, building services engineering and automotive engineering.The authorsProf. Dr.-Ing. Martin Dehli teaches thermodynamics and related subjects in the Faculty of Applied Natural Sciences, Building, Energy and Environment at Esslingen University of Applied Sciences.Prof. Dipl.-Phys. Ernst Doering, formerly of Esslingen University of Applied SciencesProf. Dr.-Ing. Herbert Schedwill, formerly of Esslingen University of Applied Sciences
Les mer
Even more detailed examples enable a safe comprehension of the calculation processes Many diagram and substance value tables increase the clarity Now also with formula symbol directory

Produktdetaljer

ISBN
9783658389093
Publisert
2022-10-30
Utgiver
Vendor
Springer
Høyde
240 mm
Bredde
168 mm
Aldersnivå
Upper undergraduate, P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet

Biographical note

Prof. Dr.-Ing. Martin Dehli, *1948, studied mechanical engineering and energy technology and obtained his doctorate on canonical equations of state in thermodynamics at the Technical University of Stuttgart. After working for three years in an engineering company, he worked for fourteen years in a large energy supply company – among other things as head of department for decentralised energy technologies and for fundamental issues. Since 1991 at the Esslingen University of Applied Sciences (Hochschule Esslingen). Teaching areas: Thermodynamics, Energy Technology, Gas Technology, Combustion etc. Co-author of this textbook since 2003.

Prof. Dipl.-Phys. Ernst Doering, 1925-1982, studied at the Technical University of Karlsruhe. After six years in industry in the fields of fluid mechanics and drying technology, he worked from 1958 at the Staatliche Ingenieurschule, now Esslingen University of Applied Sciences. 1968 Author of the first edition of this textbook.

Prof. Dr.-Ing. Herbert Schedwill, 1927-2015, after apprenticeship as a mechanic, studied at the Technical University of Stuttgart. Then three years of engineering work in design, development and testing in the field of heat transfer. He obtained his doctorate on longitudinal heat conduction in the plane partition wall of recuperative heat exchangers. From 1970 to 1989 at the Staatliche Ingenieurschule, now Esslingen University of Applied Sciences (Hochschule Esslingen). Until 2015 co-author of this textbook, whereby he gave essential impulses for its further development.