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The growing demand of energy accounting in industries is the main
challenge for academics and engineers working in chemical
processing plants, food industries, and the energy sector. Applied
Thermodynamics in Unit Operations: Solved Examples on Energy,
Exergy and Economic Analyses of Processes addresses this demand and
offers a clear contribution to the quantification of energy
consumption in processes, while also solving the economic aspects
of energy that are vital in real-life industrial contexts.
Features: • Combines the energy and exergy routines to analyze
utilities and unit operations in a wide range of engineering
scopes: nozzles, turbines, compressors, evaporators, HVAC, drying
technology, steam handling, and power generation. • Offers a
detailed procedure of finding economic wealth of energy in the
operations. • Discusses basic concepts of thermal engineering and
industrial operational insights through practiced examples,
schematic illustrations, and software codes. • The only book to
include practical problems of industrial operations solved in
detail and complementary EES codes for the solutions. • Features
examples selected from authors’ real-world experience in
industrial projects. The book is a handy reference for researchers
and practitioners in the areas of process, chemical, and mechanical
engineering, undergraduate and postgraduate students in those
disciplines, and engineers working in industry and production
managers. Some examples are solved in EES to help the audience
apply computer coding for thermal calculations.
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