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This research program aims to develop and apply methodologies for the analysis of energy systems components and plants in their typical operating conditions (design, off-design and degraded operation) as well as the optimization of their configuration and design. The methods applied to reach this goal are based on the use of quantities derived from the second law of thermodynamics, such as exergy analysis, minimum entropy generation, fuel impact formula and thermoeconomic analysis. Modelling approaches include lumped models and continuum models, also integrated between them. Possible examples of plants and components are fuel cells, district heating systems, geothermal heat pumps, storage systems based on phase change materials, hydro turbines and thermal solar systems.
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