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אסיף מאגר המחקר החקלאי
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A solar greenhouse based on water sleeves and a movable thermal screen for use in arid regions
Year:
1996
Source of publication :
Acta Horticulturae
Authors :
Cohen, Shabtai
;
.
Volume :
434
Co-Authors:
Korin, E., Chemical Engineering Dept., Ben-Gurion University of the Negev, P.O.B. 653, Beer-Sheva, 84105, Israel
Pasternak, D., Institutes for Applied Research, Ben-Gurion University of the Negev, P.O.B. 653, Beer-Sheva, 84105, Israel
Cohen, S., Institutes for Applied Research, Ben-Gurion University of the Negev, P.O.B. 653, Beer-Sheva, 84105, Israel
Klotz, H., Institutes for Applied Research, Ben-Gurion University of the Negev, P.O.B. 653, Beer-Sheva, 84105, Israel
Drori, U., Nifla Ltd. Greenhouses, Kfar Harif, 79830, Israel
Facilitators :
From page:
221
To page:
227
(
Total pages:
7
)
Abstract:
A cost effective solar greenhouse for growing out-of-season winter crops in semiarid regions was designed and studied experimentally. The system is based on a combination of two components: 1) water sleeves, which function as a passive element for the day-time collection of solar energy that is then used for warming, mainly during the night; and 2) a movable thermal screen, which is spread over the plants at night to reduce heat loss to the surroundings. The solar greenhouse is designed to operate as a closed system most of the winter to enable maximal solar energy storage in the sleeves. This concept was applied to melon production, as a test crop to assess whether high-quality fruit could be obtained during the winter for export to Europe. The experiment was carried out in six identical tunnels, 4 m wide, 11 m long, and 2 m high. Average increase of the water temperature in the sleeves was about 7.5°C on a clear day compared with about 4°C on a cloudy day. On a typical clear night following a sunny day air temperatures in the greenhouse at a height of 0.5 m above the ground were 6-7°C higher than outdoor temperatures, and comparable soil temperatures (at a depth of 20 cm) were 8.5-9°C higher indoors. After a cloudy day this difference in air temperature was reduced to about 5°C. On the assumption that there are 120 growing days per season, the average energy stored in the water sleeves was estimated to be equivalent to 4.2-7.5 kg/m 2 of petroleum per season.
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DOI :
Article number:
Affiliations:
Database:
Scopus
Publication Type:
Conference paper
;
.
Language:
English
Editors' remarks:
ID:
25349
Last updated date:
02/03/2022 17:27
Creation date:
17/04/2018 00:14
Scientific Publication
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