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Finite Time Thermodynamics of Power and Refrigeration Cycles, 1st ed. 2017

Langue : Anglais

Auteurs :

Couverture de l’ouvrage Finite Time Thermodynamics of Power and Refrigeration Cycles

This book addresses the concept and applications of Finite Time Thermodynamics to various thermal energy conversion systems including heat engines, heat pumps, and refrigeration and air-conditioning systems. The book is the first of its kind, presenting detailed analytical formulations for the design and optimisation of various power producing and cooling cycles including but not limited to:

? Vapour power cycles
? Gas power cycles
? Vapour compression cycles
? Vapour absorption cycles
? Rankine cycle coupled refrigeration systems

Further, the book addresses the thermoeconomic analysis for the optimisation of thermal cycles, an important field of study in the present age and which is characterised by multi-objective optimization regarding energy, ecology, the environment and economics. Lastly, the book provides the readers with key techniques associated with Finite Time Thermodynamics, allowing them to understand the relevance of irreversibilities associated with real processes and the scientific reasons for deviations from ideal performance. The book is aimed at a broad readership, and offers a valuable reference book for graduate students, scholars and professionals working in the areas of thermal science and engineering.

1. General Introduction and the Concept of Finite Time Thermodynamics

2. Finite Time Thermodynamic Analysis of Carnot and Rankine Heat Engines

3. Finite Time Thermodynamic Analysis of Brayton Cycle

4. Finite Time Thermodynamic Analysis of Modified Brayton Cycle

5. Finite Time Thermodynamic Analysis of Complex Brayton Cycle

6. Finite Time Thermodynamic Analysis of Stirling and Ericsson Power Cycles

7. Finite Time Thermodynamics of Vapour Compression Refrigeration Cycles

8. Finite Time Thermodynamics of Cascaded Refrigeration and Heat Pump cycles

9. Finite Time Thermodynamics of Rankine Cycle Airconditioning and Heat Pump Cycles

10. Finite Time Thermodynamics of Brayton Refrigeration Cycle

11. Finite Time Thermodynamics of Stirling/Ericsson Refrige
ration Cycles

12. Finite Time Thermodynamics of Vapour-Absorption Airconditioning and Heat Pump Cycles

Index

Prof. S.C. Kaushik received his Ph.D. in Plasma Science from IIT Delhi after his distinguished First Position in Master’s degree in electronics. His research fields include the activities in Plasma Science and Thermal Science and Engineering; Energy Conservation and Heat Recovery; Solar Refrigeration and Airconditioning; Solar Architecture; and Thermal Storage and Power Generation. He has made significant contributions in these fields as evident by his more than 400 research publications in Journals/Conferences of repute at national and international levels. Dr. Kaushik has also completed several sponsored and consultancy projects from various government and private agencies. He has guided 50 Ph.D. Thesis and 75 M.Tech projects and has authored several books. Dr. Kaushik has also been the Postdoctoral Fellow at Queensland University, Brisbane, Australia, Visiting Professor at LES-IIM-UNAM, Mexico and Madam Curie Visiting Fellow of European Commission, Paris, France. Prof. S.C. Kaushik has recently been coveted with Top Academic Research Performer (First Rank Holder) on all India level in the subject area of Energy for the last 5–10 years research publications citations and H-index basis as per Scopus data reported in NSTMIS-DST(GOI), New Delhi (2015).

Dr. S.K. Tyagi is working as Associate Professor at Centre for Energy Studies, I.I.T. Delhi and earlier he was working as Director/Scientist E at Sardar Swaran Singh National Institute of Renewable Energy, Kapurthala, an autonomous institution of the Ministry of New and Renewable Energy, Government of India. He has also worked as Assistant Professor at SMVDU, Katra, Jammu & Kashmir. Dr. Tyagi has worked as Invited Scientist at Korea Institute of Energy Research, South Korea and as Post Doctoral Fellow at The Hong Kong Polytechnic University, Hong Kong, Zhejiang University, Hangzhou and Xiamen University, Xiamen, China during 2002–2008. He has made a significant contribution in R&D activities as evident by mor

Enriches the understanding of Finite Time Thermodynamics

Maximizes the readers' insight into the thermodynamic basics for power generation, refrigeration and space conditioning cycles

Illustrates the complete process of external and internal irreversibilities associated with thermal systems

Explains deviation among ideal, theoretical and actual performances

Date de parution :

Ouvrage de 317 p.

15.5x23.5 cm

Disponible chez l'éditeur (délai d'approvisionnement : 15 jours).

105,49 €

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