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Exergy Analysis and Thermoeconomics of Buildings: Design and Analysis for Sustainable Energy Systems

Autor Jose M Sala-Lizarraga, Ana Picallo-Perez
en Limba Engleză Paperback – 26 sep 2019
Quantifying exergy losses in the energy supply system of buildings reveals the potential for energy improvement, which cannot be discovered using conventional energy analysis. Thermoeconomics combines economic and thermodynamic analysis by applying the concept of cost (an economic concept) to exergy, as exergy is a thermodynamic property fit for this purpose, in that it combines the quantity of energy with its quality factor.
Exergy Analysis and Thermoeconomics of Buildings applies exergy analysis methods and thermoeconomics to the built environment. The mechanisms of heat transfer throughout the envelope of buildings are analyzed from an exergy perspective and then to the building thermal installations, analyzing the different components, such as condensing boilers, absorption refrigerators, microcogeneration plants, etc., including solar installations and finally the thermal facilities as a whole.
A detailed analysis of the cost formation process is presented, which has its physical roots firmly planted in the second law of thermodynamics. The basic principles and the rules of cost allocation, in energy units (exergy cost), in monetary units (exergoeconomic cost), and in CO2 emissions (exergoenvironmental cost), based on the so-called Exergy Cost Theory are presented and applied to thermal installations of buildings.
Clear and rigorous in its exposition, Exergy Analysis and Thermoeconomics of Buildings discusses exergy analysis and thermoeconomics and the role they could play in the analysis and design of building components, either the envelope or the thermal facilities, as well as the diagnosis of thermal installations. This book moves progressively from introducing the basic concepts to applying them.
Exergy Analysis and Thermoeconomics of Buildings provides examples of specific cases throughout this book. These cases include real data, so that the results obtained are useful to interpret the inefficiencies and losses that truly occur in actual installations; hence, the assessment of their effects encourages the manner to improve efficiency.


  • Applies exergy analysis methods for the installation of building thermal facilities equipment components, including pipes, valves, heat exchangers, boilers and heat pumps
  • Helps readers determine the operational costs of heating and cooling building systems
  • Includes exergy analysis methods that are devoted to absorption refrigerators, adsorption cooling systems, basic air conditioning processes, ventilation systems and solar systems, either thermal and PV
  • Discusses the direct application of exergy analysis concepts, including examples of buildings with typical heating, DHW and air conditioning installations
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Specificații

ISBN-13: 9780128176115
ISBN-10: 0128176113
Pagini: 1114
Ilustrații: 350 illustrations (250 in full color)
Dimensiuni: 152 x 229 x 57 mm
Greutate: 1.46 kg
Editura: ELSEVIER SCIENCE

Public țintă

Civil Engineers, Environmental Engineers, and Construction Engineers, Architects, and Mechanical Engineers

Cuprins

Section A Foundations of exergy theory1 Efficient buildings and the arguments for incorporating exergy2 Quality of energy and exergy3 Calculation of physical and chemical exergySection B Exergy analysis of the envelope and thermal installations4 Exergy analysis of heat transmission in buildings5 Exergy analysis of thermal facilities equipment in buildings (I)6 Exergy analysis of thermal equipment in buildings (II)Section C Thermoeconomics and symbolic thermoeconomics. Costs and diagnosis of installations7 Thermoeconomics of the thermal installations of buildings8 Symbolic Thermoeconomics applied to thermal facilities9 Operational diagnosis of thermal installations in buildingsSection D Sustainability and exergy in buildings10 Sustainability and exergy in buildings11 Application of exergecoeconomic and exergoenvironmental analysis to several cases of building thermal systems Section E Design and thermoeconomics in buildings12 Optimization and design of the envelope and thermal installations of buildingsSection F Exergy in the thermodynamics of continuous media13 Exergy in continuous media. Application to equipment design