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An Indirect Passive Solar Dryer for Drying

机译:用于干燥的间接被动太阳能烘干机

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A solar drying system designed on the principles of convective heat flow, constructed from local materials was employed in drying yam (Dioscorea Alata). A glass collector having an efficiency of about 0.63 was used along with an absorber for absorbing the heat energy. The drying chamber consisted of drying trays. A chimney fitted at the top centre of the drying chamber enhanced airflow. Air passing through the collector heated up and dried the foodstuff in the drying chamber. The latitude of Ilorin is 8.26°N and the collector angle could be varied. 56°C, 41°C and 71°C were obtained as the maximum attainable temperatures for the drying chamber, ambient and collector respectively. Two samples of yam chips, each weighing 1560g and having an average size of 1cm thick, were dried both inside the dryer and outside the dryer within its surrounding. The initial moisture content of the yam was 70.3% (wet basis) and its final moisture content was 9% (wet basis). The result was compared to natural sun drying. It was observed that the drying time was reduced from 52 hours for sun drying to 45 hours for solar drying. The total cost of the construction was 6,105 Naira.
机译:在干燥的山药(Dioscorea Alata)中使用基于对流热流原理设计的太阳能干燥系统。使用具有约0.63的效率约0.63的玻璃收集器以及吸收器,用于吸收热能。干燥室由干燥托盘组成。烟囱安装在干燥室顶部中心增强的气流。通过收集器的空气加热并在干燥室中干燥食品。 iLorin的纬度为8.26°N,可以改变收集器角度。获得56℃,41℃和71℃,分别获得干燥室,环境和收集器的最大可达到的温度。两种纱线芯片样品,每种称重1560g并厚度为1cm厚,在其周围的干燥器内部干燥。山药的初始水分含量为70.3%(湿基),其最终水分含量为9%(湿法)。结果与天然阳光干燥进行了比较。观察到干燥时间从52小时减少,阳光干燥至45小时以进行太阳能干燥。建筑的总成本为6,105奈拉。

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