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Effect of Thermal Screen Position on Greenhouse Microclimate and Impact on Crop Growth and Yield

Authors
Zakir, E.Ogunlowo, Q.O.Akpenpuun, T.D.Na, W.-H.Adesanya, M.A.Rabiu, A.Adedeji, O.S.Kim, H.T.Lee, H.-W.
Issue Date
Dec-2022
Publisher
University of Ilorin, Faculty of Engineering and Technology
Keywords
Crop growth; Crop yield; Greenhouse microclimate; Solar radiation Energy consumption; Thermal screen position
Citation
Nigerian Journal of Technological Development, v.19, no.4, pp 417 - 432
Pages
16
Indexed
SCOPUS
Journal Title
Nigerian Journal of Technological Development
Volume
19
Number
4
Start Page
417
End Page
432
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/30519
DOI
10.4314/njtd.v19i4.15
ISSN
0189-9546
Abstract
Worldwide, researchers are developing methods in which producers can obtain higher yields and conserve more energy in greenhouse crop cultivation. To achieve this, thermal screens are deployed during cold nights and rolled up during the daytime. The positioning of these screens causes a reduction in the amount of solar radiation (SR) received by greenhouses, especially the single span. The impact of thermal screen position on the receipt of SR, temperature, relative humidity (RH), vapour pressure deficit (VPD), fuel consumption, and the consequent effects on crop yield and growth were investigated in this study. Two greenhouses with similar dimensions and structure but different thermal screen positions were designed, namely R-greenhouse (RGH) with thermal screens at the centre of the roof and Q-greenhouse (QGH) at five degrees (5o) Northward. Strawberries were cultivated as study crops. Statistical analysis of the recorded data of greenhouse microclimate parameters, crop growth, and yield showed that both greenhouses performed similarly in energy savings, and there was no significant difference regarding temperature, RH, and VPD. However, there were significant differences in the crop growth and yield obtained in the QGH compared to RGH. This can be attributed to the higher amount of SR received by the QGH than the SR that was received by the RGH, which was achieved because the thermal screen was installed on the north side of the Q greenhouse. © 2022, University of Ilorin, Faculty of Engineering and Technology. All rights reserved.
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농업생명과학대학 (생물산업기계공학과)
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