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Katedra Aparatury i Maszynoznawstwa Chemicznego
Potencjał Badawczy* zasobów, możliwości pozyskania, konwersji, magazynowania i transportu energii ze źródeł odnawialnych, w tym energii słonecznej i biopaliw * możliwości odzyskiwania energii odpadowej w procesach przemysłowych i sposoby jej zagospodarowania * opracowanie procesów technologicznych recyklingu materiałowego zużytych modułów i ogniw fotowoltaicznych * opracowanie procesów technologicznych recyklingu materiałowego zużytych opon samochodowych *...
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Zespół ekoinżynierii i silników spalinowych
Potencjał BadawczyWysokosprawne, proekologiczne napędy i systemy konwersji energii
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Zespół Termodynamiki, Chłodnictwa i Klimatyzacji
Potencjał BadawczyZagadnienia związane z konwersją energii, technikami pomiarowymi i chłodnictwem
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Pozostałe wyniki Pokaż wszystkie wyniki (216)
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Stability Investigation of the PCM Nanocomposites
PublikacjaEnsuring the stability is a key issue to be solved for the technical application of nanocomposites. In this work, fatty acid P1801 served as base phase change material (PCM)P1801, and its main ingredients are palmitic acid (58%) and stearic acid (38%). Titania (TiO2) and alumina (Al2O3) with mass concentrations of 1% and 5% were selected as nanoparticles, while polyvinylpyrrolidone (PVP) or oleic acid (OA) with mass concentrations...
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Stability investigation of the PCM nanocomposites
PublikacjaIn present study was showed the results of research the stability of nanoPCMs in terms of types and concentrations of surfactant used. For stearic acid has been added PVP or oleic acid in concentrations of 0%, 5% and 10%. Nanoparticles TiO2 and Al-2O3 in concentration of 1% were chosen to be researched in this test. The mixing of nanocomposites has been done in an ultrasonic scrubber in which the samples were placed for 45 mins....
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Thermal energy storage using stearic acid as PCM material
PublikacjaThis work presents an experimental study of thermal energy storage by use of PCM. The aim of the study was to establish the influence of different inlet temperature of heat transfer fluid (HTF) and different Reynolds number of HTF on intensity of charging process. The PCM used in this study was stearic acid and water was used as HTF. A copper helical coil mounted in cylindrical container served as a heat transfer surface.
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Effect of Tube Bundle Arrangement on the Performance of PCM Heat Storage Units
PublikacjaThe results of comprehensive study on charging and discharging of latent heat storage systems (LHSS) are presented. The multi tube shell-and-tube unit with a variable layouts of the tube bundles are examined. Two tube arrangements – in-line and staggered are tested. A variable number of tubes and different tube positions in a bundle are investigated. Moreover, two pitch ratios are studied. Three commercially available substances...
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The Possibility of Phase Change Materials (PCM) Usage to Increase Efficiency of the Photovoltaic Modules
PublikacjaSolar energy is widely available, free and inexhaustible. Furthermore this source of energy is the most friendly to the environment. For direct conversion of solar energy into useful forms like of electricity and thermal energy, respectively photovoltaic cells and solar collectors are being used. Forecast indicate that the first one solution will soon have a significant part in meeting the global energy demand. Therefore it is...