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Integrated Absorption Refrigeration Systems - Comparative Energy and Exergy Analyses (Hardcover, 1st ed. 2016): Ibrahim Dincer,... Integrated Absorption Refrigeration Systems - Comparative Energy and Exergy Analyses (Hardcover, 1st ed. 2016)
Ibrahim Dincer, Tahir Abdul Hussain Ratlamwala
R3,804 R3,365 Discovery Miles 33 650 Save R439 (12%) Ships in 12 - 17 working days

This book provides a detailed analysis of absorption refrigeration systems, covering single effect to multi-effect systems and their applications. Both the first and second laws of thermodynamics are discussed in relation to refrigeration systems to show how system performance differs from one law to another. Comparative energy and exergy analyses and assessments of single effect, double effect, triple effect and quadruple effect absorption refrigeration system are performed to illustrate the impact of an increase in the number of effects on system performance. In particular, the second law (exergy) formulation for absorption refrigeration systems, rarely discussed by other works, is covered in detail. Integrated Absorption Refrigeration Systems will help researchers, students and instructors in the formulation of energy and exergy efficiency equations for absorption refrigeration systems.

Integrated Absorption Refrigeration Systems - Comparative Energy and Exergy Analyses (Paperback, Softcover reprint of the... Integrated Absorption Refrigeration Systems - Comparative Energy and Exergy Analyses (Paperback, Softcover reprint of the original 1st ed. 2016)
Ibrahim Dincer, Tahir Abdul Hussain Ratlamwala
R2,789 Discovery Miles 27 890 Ships in 10 - 15 working days

This book provides a detailed analysis of absorption refrigeration systems, covering single effect to multi-effect systems and their applications. Both the first and second laws of thermodynamics are discussed in relation to refrigeration systems to show how system performance differs from one law to another. Comparative energy and exergy analyses and assessments of single effect, double effect, triple effect and quadruple effect absorption refrigeration system are performed to illustrate the impact of an increase in the number of effects on system performance. In particular, the second law (exergy) formulation for absorption refrigeration systems, rarely discussed by other works, is covered in detail. Integrated Absorption Refrigeration Systems will help researchers, students and instructors in the formulation of energy and exergy efficiency equations for absorption refrigeration systems.

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