Development of a photovoltaic powered forced convection solar dryer
AO Adelaja, BY Ogunmola… - Advanced Materials …, 2009 - Trans Tech Publ
AO Adelaja, BY Ogunmola, PO Akolade
Advanced Materials Research, 2009•Trans Tech PublThis solar conversion system incorporates a suction fan powered by a solar PV module.
Located at the outlet of the chamber is the dc suction fan utilised to achieve forced air
circulation without the use of external power supply like grid electricity, fossil fuel and
battery. Simple thermal energy balance equations and heat transfer equations were
employed in the design of the system. The operational efficiency of the collector is 83.2%
and mass flow rate 1.58 kg/min, the maximum temperature achieved in the chamber was …
Located at the outlet of the chamber is the dc suction fan utilised to achieve forced air
circulation without the use of external power supply like grid electricity, fossil fuel and
battery. Simple thermal energy balance equations and heat transfer equations were
employed in the design of the system. The operational efficiency of the collector is 83.2%
and mass flow rate 1.58 kg/min, the maximum temperature achieved in the chamber was …
This solar conversion system incorporates a suction fan powered by a solar PV module. Located at the outlet of the chamber is the d.c suction fan utilised to achieve forced air circulation without the use of external power supply like grid electricity, fossil fuel and battery. Simple thermal energy balance equations and heat transfer equations were employed in the design of the system. The operational efficiency of the collector is 83.2% and mass flow rate 1.58kg/min, the maximum temperature achieved in the chamber was 58oC. The system was used to dry vegetable, hydrophylum. The capital cost is less than $150.
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