Fundamentals of Technical Thermodynamics [electronic resource] : Textbook for Engineering Students / by Martin Dehli, Ernst Doering, Herbert Schedwill.

Por: Dehli, Martin [author.]Colaborador(es): Doering, Ernst [author.] | Schedwill, Herbert [author.] | SpringerLink (Online service)Tipo de material: TextoTextoEditor: Wiesbaden : Springer Fachmedien Wiesbaden : Imprint: Springer, 2023Edición: 1st ed. 2023Descripción: XIX, 606 p. 379 illus. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9783658389109Tema(s): Thermodynamics | Heat engineering | Heat transfer | Mass transfer | Mechanical engineering | Engineering Thermodynamics, Heat and Mass Transfer | Mechanical EngineeringFormatos físicos adicionales: Printed edition:: Sin título; Printed edition:: Sin títuloClasificación CDD: 621.4021 Clasificación LoC:TJ265TP156.M3Recursos en línea: Libro electrónicoTexto
Contenidos:
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.
En: Springer Nature eBookResumen: 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 contents 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 The target groups Students of mechanical engineering, power engineering, environmental engineering, process engineering, building services engineering and automotive engineering. The authors Prof. 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 Sciences Prof. Dr.-Ing. Herbert Schedwill, formerly of Esslingen University of Applied Sciences.
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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.

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 contents 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 The target groups Students of mechanical engineering, power engineering, environmental engineering, process engineering, building services engineering and automotive engineering. The authors Prof. 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 Sciences Prof. Dr.-Ing. Herbert Schedwill, formerly of Esslingen University of Applied Sciences.

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