Abstract:
The use of solar photovoltaic technology coupled with plant-based evaporative
coolers in cooling down greenhouses is regarded as one of the greenest technology
to attain a more sustainable agriculture even in adverse weather conditions
such as in the Sahel. The aim of this study was to investigate the cooling effect of
PV powered eco-friendly coolers onto a greenhouse microsystem. With the help
of a weather station, temperature, relative humidity, wind speed, and solar
irradiance data from inside and outside greenhouse were collected and analyzed.
ANSYS fluent software was used to simulate the flow patterns under various
weather events. When exposed to the highest solar irradiation event (1355.6 w/
m2, 34.3 C and 71% relative humidity), the greenhouse cooling system could
create a drop of 4.9 C and an increase of 15% relative humidity. The lowest
temperature attained in the greenhouse was 15.7 C (at night) whereas the highest
temperature (in the afternoon) was 37.8 C against 40.8 C outside. Flow patterns
showed a well-distributed heat around crop’s coverage area in the greenhouse.
Energy production for cooling averaged around 4199.016 Wh/day despite the
observation of 7620.792 Wh/day of energy loss due to full battery state. Optimization
is necessary for cost-effectiveness of the greenhouse cooling system.
Description:
A Publication submitted to the West African Science Service Centre on Climate Change and Adapted Land Use and the Université Abdou Moumouni, Niger in partial fulfillment of the requirements for the degree of Master of Science Degree in Climate Change and Energy