Performance Analysis of a Solar DHW System with Adsorption Module Operating in Different World Locations
Autor: | Adélio Rodrigues Gaspar, G.J.V.N. Brites, José J. Costa, Marco S. Fernandes, Vítor A. F. Costa |
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Jazyk: | angličtina |
Rok vydání: | 2019 |
Předmět: |
Meteorology
020209 energy 02 engineering and technology Thermal energy storage Energy storage Latitude Adsorption 0202 electrical engineering electronic engineering information engineering General Materials Science Instrumentation solar DWH energy efficiency Fluid Flow and Transfer Processes Computer simulation Process Chemistry and Technology Water storage General Engineering Energy consumption 021001 nanoscience & nanotechnology Computer Science Applications heat storage adsorption climate conditions numerical simulation Environmental science 0210 nano-technology Efficient energy use |
Zdroj: | Applied Sciences Volume 9 Issue 24 |
ISSN: | 2076-3417 |
DOI: | 10.3390/app9245480 |
Popis: | A numerical study was conducted on the performance of a solar domestic hot water storage system with an adsorption module operating in seven different world locations. The base system was optimized for Portuguese conditions and, without changing the system itself and the water consumption profile, its performance was investigated by altering local installation and operating conditions and solar collector inclination angles. The overall dynamical model of the system was used for numerical simulations. The improved performance of the system was assessed by the reduction achieved on the annual energy consumption of a backup water heater when compared with a similar conventional energy storage system (without an adsorption module). The results showed that the best performances were obtained in locations where winter and summer are clearly defined, especially locations where winters are colder, and with solar collectors&rsquo inclination angles larger than the local latitude, except for locations with low latitudes, where solar collectors&rsquo inclination angles are not so relevant to the system performance. It was also discussed how the performance results must be carefully analyzed, as for low-latitude locations the absolute savings are in fact smaller even if their relative values are of the same order or even higher than for higher-latitude locations. |
Databáze: | OpenAIRE |
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