研究目的
To describe a prototype of a photovoltaic greenhouse with both ?xed and horizontal PV panels that exploit the natural variation in the elevation angle of the sun’s rays during the year to allow for “passive” variation in shading.
研究成果
The study demonstrates that passive variation in shading with fixed horizontal PV panels is feasible and favorable for meeting the PAR needs of greenhouse plants. A specific mathematical relationship was established to define the precise distance between panels to optimize shading based on plant requirements.
研究不足
The energy efficiency of horizontal PV panels is reduced by about one-third compared to those in an optimal position. The shading obtained may be excessive for certain plant species, requiring adjustments in panel distance.
1:Experimental Design and Method Selection:
The study involved the construction of a dynamic photovoltaic greenhouse prototype with fixed horizontal PV panels to exploit the natural variation in the elevation angle of the sun’s rays for passive shading variation.
2:Sample Selection and Data Sources:
The prototype was built at the didactic experimental farm “N. Lupori” of the University of Tuscia of Viterbo. External and internal global solar radiation were measured using a Pyranometer CS300, and electricity production was measured using a Current Transducer and a Voltage Sensor.
3:List of Experimental Equipment and Materials:
Equipment included a Pyranometer CS300, Current Transducer (CE-IZ04-35A2-
4:0/0-50A, DC, Phidgets), Voltage Sensor (CE-VZ02-32MS1-5, DC 0–200 V, Phidgets), and a Campbell CR1000 data acquisition system. Experimental Procedures and Operational Workflow:
The study analyzed the variation over time of internal and external solar radiation with horizontal fixed PV panels, determined the necessary shading value for plant species, compared shading values across months, and identified a mathematical model for optimal panel distance.
5:Data Analysis Methods:
Data analysis involved calculating the elevation angle of the sun’s rays and corresponding shading, comparing shading values with plant needs, and establishing a mathematical relationship for panel distance.
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