FIELD: agriculture.
SUBSTANCE: invention relates to fruit growing. Method comprises creating positive air pressure on the lower side of the sheet canopy, and creation of negative air pressure on upper side of sheet canopy. At that, negative air pressure draws in air supplied due to positive air pressure on lower side of sheet canopy from lower side of sheet canopy through sheet canopy towards upper side of sheet canopy to remove heat from sheet canopy. Positive air pressure is constant along the entire length of the collector passing along the sheet canopy. System comprises support, at least one plant supported by support. At least one plant has a plurality of leaves forming at least one leaf canopy; at least one air supply manifold arranged and configured to create a positive air pressure on the underside of the at least one sheet canopy; at least one air return manifold is arranged to create negative air pressure on the upper side of at least one sheet canopy. When the positive air pressure and the negative air pressure are created, the negative air pressure draws in air supplied by the positive air pressure on the underside of the at least one sheet canopy, through at least one sheet canopy towards the upper side of at least one sheet canopy to remove heat from at least one sheet canopy. At least one air supply manifold has a plurality of spaced apart nozzles of air flow through the sheet canopy, passing along the length of at least one air supply manifold. Airflow nozzles through the sheet canopy are configured to blow air through the sheet canopy; and nozzles of air flow through sheet canopy are made with possibility to maintain constant air flow through sheet canopy along length of at least one air supply manifold.
EFFECT: inventions provide effective heat removal from plants.
25 cl, 24 dwg
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Authors
Dates
2024-09-25—Published
2020-05-08—Filed