Techno-economic optimization of configuration and capacity of a polygeneration system for the energy demands of a public swimming pool building
Autor: | V Marko Mancic, S Milena Jovanovic, N Milena Rajic, Milan Djordjevic Lj., S Dragoljub Zivkovic, M Dejan Mitrovic |
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Jazyk: | angličtina |
Rok vydání: | 2018 |
Předmět: |
polygeneration
Renewable Energy Sustainability and the Environment 020209 energy lcsh:Mechanical engineering and machinery Techno economic 020302 automobile design & engineering 02 engineering and technology Environmental economics 7. Clean energy renewable energy sources public swimming pool 0203 mechanical engineering techno-economic optimization 13. Climate action Public swimming pool 0202 electrical engineering electronic engineering information engineering Environmental science lcsh:TJ1-1570 Energy (signal processing) |
Zdroj: | Thermal Science, Vol 22, Iss Suppl. 5, Pp 1535-1549 (2018) |
ISSN: | 2334-7163 0354-9836 |
Popis: | A polygeneration system is an energy system capable of providing multiple energy outputs to meet local demands, by application of high process integration. In this paper, optimal configuration and capacity of a polygeneration system for an indoor swimming pool building is determined by application of a method based on TRNSYS simulation and GenOpt optimization software. Based on the applicability, a superstructure of the polygeneration system is integrated, consisting of the following polygeneration modules: an internal combustion engine cogeneration module, a vapor compression chiller, and adsorption chiller, a ground source heat pump, flat plate solar thermal collectors, photovoltaic collectors, and heat storage. Annual behavior of energy loads of the public swimming pool building during a typical meteorological year and the polygeneration system are modeled and simulated using TRNSYS software, whereas techno-economic optimization is performed by GenOpt optimization. The results indicated the optimal con-figuration of the polygeneration system for the modelled energy demands, as well as the optimal capacity of the polygeneration modules, thus defining the optimal capacity of the polygeneration system for the energy demands of the public swimming pool building. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. III 42006: Research and development of energy and environmentally highly effective polygeneration systems based on using renewable energy sources] |
Databáze: | OpenAIRE |
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