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The performance of an integral greenhouse solar air-heater

Bibliography: leaves 76-83.

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Bibliographic Details
Main Author: Bam, Peter Jonathan
Other Authors: Gryzagoridis, Jasson
Format: Thesis
Language:English
Published: Department of Mechanical Engineering 2014
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access_status_str Open Access
author Bam, Peter Jonathan
author2 Gryzagoridis, Jasson
author_browse Bam, Peter Jonathan
Gryzagoridis, Jasson
author_facet Gryzagoridis, Jasson
Bam, Peter Jonathan
author_sort Bam, Peter Jonathan
collection Thesis
description Bibliography: leaves 76-83.
format Thesis
id oai:open.uct.ac.za:11427/7600
institution University of Cape Town (South Africa)
language eng
last_indexed 2026-06-10T12:48:17.244Z
license_str Not specified — see source repository
provenance_str_mv Harvested via OAI-PMH from UCTD — University of Cape Town Open Access Repository
publishDate 2014
publishDateRange 2014
publishDateSort 2014
publisher Department of Mechanical Engineering
publisherStr Department of Mechanical Engineering
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source_str UCTD — University of Cape Town Open Access Repository
spelling oai:open.uct.ac.za:11427/7600 The performance of an integral greenhouse solar air-heater Bam, Peter Jonathan Gryzagoridis, Jasson Mechanical Engineering Bibliography: leaves 76-83. The Baird-type solar collector is a solar air-heater, utilising black shade-cloth as the absorber, that is incorporated as part of the roof of a greenhouse. It is intended to be used, in conjunction with a heat storage device, to provide greenhouse heating (and cooling), and so to assist in maintaining an optimum greenhouse plant-cultivation environment. An analysis of a Baird-type integral greenhouse solar collector is presented in this thesis. This has involved designing and building a solar simulator, which was used to test the performance of a model of a greenhouse-integral solar collector. The experimental results thus derived were compared with results generated using a theoretical heat-transfer model of the solar collector and show that, on average, the theoretical model was capable of predicting the model solar collector heat-gain to within six percent of the measured values. Predictions of performance were made for various input conditions, such as high and low values of inlet-air temperature, different ground temperatures, different mass-flowrates and radiation intensities. Although subject to the input conditions, the results indicated an efficiency of solar energy collection of about 35 percent for the model greenhouse solar collector. The theoretical model was used (with appropriate modifications), to predict the performance of a "life-size" Baird-type greenhouse integral solar collector. Predictions were made for average conditions in the Cape Peninsula for the months of January and June. Assuming zero windspeed, a collector efficiency of approximately 42 percent is anticipated for most of the January day and approximately 33 percent for most of the June day. 2014-09-22T07:54:38Z 2014-09-22T07:54:38Z 1984 Master Thesis Masters MSc http://hdl.handle.net/11427/7600 eng application/pdf Department of Mechanical Engineering Faculty of Engineering and the Built Environment University of Cape Town
spellingShingle Mechanical Engineering
Bam, Peter Jonathan
The performance of an integral greenhouse solar air-heater
thesis_degree_str Master's
title The performance of an integral greenhouse solar air-heater
title_full The performance of an integral greenhouse solar air-heater
title_fullStr The performance of an integral greenhouse solar air-heater
title_full_unstemmed The performance of an integral greenhouse solar air-heater
title_short The performance of an integral greenhouse solar air-heater
title_sort performance of an integral greenhouse solar air heater
topic Mechanical Engineering
url http://hdl.handle.net/11427/7600
work_keys_str_mv AT bampeterjonathan theperformanceofanintegralgreenhousesolarairheater
AT bampeterjonathan performanceofanintegralgreenhousesolarairheater