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Experimental Analysis of Air Flow Patterns in Perfomance of Flat Plate Solar Collectors

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dc.creator Bakari, Ramadhani
dc.creator Minja, Rwaichi J. A.
dc.creator Njau, Karoli N.
dc.date 2016-07-11T09:26:07Z
dc.date 2016-07-11T09:26:07Z
dc.date 2015
dc.date.accessioned 2018-03-27T08:32:31Z
dc.date.available 2018-03-27T08:32:31Z
dc.identifier Ramadhani, B., Minja, R.J. and Njau, K.N., 2015. Experimental analysis of air flow patterns in perfomance of flat plate solar collectors. African Journal of Agricultural Research, 10(6), pp.524-533.
dc.identifier http://hdl.handle.net/20.500.11810/3044
dc.identifier 10.5897/AJAR2012.2179
dc.identifier.uri http://hdl.handle.net/20.500.11810/3044
dc.description Solar drying is one of the promising methods of reducing post-harvest losses in rural areas. Studies have shown that, heat transfer mechanisms in a solar collector influences the performance of solar dryers. This study aims at improving heat transfer in flat plate solar collectors by designing different air flow patterns inside the collector. Three flat plate solar collectors were constructed by using Pterocarpus timber (Mninga) and tested for their effect in heat transfer at various flow patterns. Three different flow patterns namely: single duct front pass, double duct parallel flow and double duct counter flow were designed and tested. Experimental results show that collector efficiency of single duct front pass, double duct front pass and double duct counter flow were 30.6, 36.1 and 38.2% respectively. It was found that, double duct flow gives improved performance compared to single duct flow due to the increased heat transfer area. In additional, double duct counter flow showed superior performance compared to double duct parallel flow due to extended heat transfer area and the advantage of air preheating at the inlet which reduces heat losses through glazing. Through this study, it was concluded that, solar collector designs with double duct counter flow can improve collector performance for up to 8.3% compared to single duct front pass.
dc.language en
dc.publisher Academic Journals
dc.subject Single duct front pass
dc.subject Double duct parallel flow
dc.subject Double duct counter flow
dc.subject Energy
dc.subject Solar intensity
dc.title Experimental Analysis of Air Flow Patterns in Perfomance of Flat Plate Solar Collectors
dc.type Journal Article, Peer Reviewed


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