
By Ibrahim Dincer, Marc A. Rosen
Improve and optimize potency of HVAC and comparable power platforms from an exergy viewpoint. From basics to complex functions, Exergy research of Heating, air con, and Refrigeration provides readers with a transparent and concise description of exergy research and its many uses.
Focusing at the program of exergy easy methods to the first applied sciences for heating, refrigerating, and air con, Ibrahim Dincer and Marc A. Rosen display precisely how exergy can assist enhance and optimize potency, environmental functionality, and cost-effectiveness. The booklet additionally discusses the research instruments to be had, and contains many finished case reviews on present and rising platforms and applied sciences for real-world examples.
From introducing exergy and thermodynamic basics to offering using exergy equipment for heating, refrigeration, and air-con structures, this ebook equips any researcher or training engineer with the instruments had to research and grasp the appliance of exergy research to those systems.
- Explains the basics of energy/exergy for practitioners/researchers in HVAC&R fields for making improvements to efficiency
- Covers environmental tests and fiscal reviews for a well-rounded method of the topic
- Includes accomplished case reviews on either present and rising systems/technologies
- Provides examples from more than a few functions – from easy HVAC&R to extra varied approaches similar to commercial heating/cooling, cogeneration and trigeneration, and thermal storage
Read or Download Exergy analysis of heating, refrigerating and air conditioning : methods and applications PDF
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Extra info for Exergy analysis of heating, refrigerating and air conditioning : methods and applications
Example text
Efficiency analysis of a cogeneration and district energy system. Appl. Therm. Eng. 25 (1), 147–159. , 1999. Exergy as a direct measure of environmental impact. In: Proceedings of the ASME Advanced Energy Systems Division, vol. 39. American Society of Mechanical Engineers, New York. , 1980. International progress in second law analysis. Energy Int. J. 5, 709–718. , 1988. Exergy Analysis of Thermal, Chemical and Metallurgical Processes. Hemisphere, New York. , 1996. The productive structure and thermoeconomic theories of system optimization.
A systematic correlation appears to exist between exergy loss rate and capital cost, but not between energy loss rate and capital cost. This finding is based on the observation that the variation in thermodynamic loss rate/ capital cost ratio values for different devices is large when based on energy loss and small when based on exergy loss. • Devices in modern coal-fired electricity-generating stations appear to conform approximately to a particular value of the thermodynamic loss rate/capital cost ratio (based on exergy loss), which reflects the “appropriate” trade-off between exergy losses and capital costs that is practiced in successful plant designs.
Price-driven economic order systems from a thermodynamic point of view. Int. J. Prod. Res. 42, 5167–5184. , 1980. Availability: the concept and associated terminology. Energy 5, 679–692. , 1995. The Exergy Method of Thermal Plant Analysis, reprint ed. Krieger, Malabar, FL. , 1987. Nomenclature for exergy analysis. In: Second Law Analysis of Thermal Systems. ASME, New York, pp. 171–176. , 1990. The exergy analysis: role and didactic importance of a standard use of basic concepts, terms and symbols.