Design, construction, and performance evaluation of a solar tunnel dryer with an auxiliary flat-plate solar air heater for bitter gourd drying (<em>Momordica charantia</em>)

Q3 Multidisciplinary Philippine Journal of Science Pub Date : 2023-10-12 DOI:10.4038/jsc.v14i1.61
P. Peratheepan, C. Nishan, F. C. Ragel
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Abstract

A solar tunnel dryer and an auxiliary solar air heating unit compatible with the tunnel dryer were designed and constructed. The solar tunnel dryer has a collector chamber and a drying chamber, which are separated by a board with holes in top for air circulation. The drying experiments were conducted for sliced bitter gourd (Momordica charantia) samples in the solar drying system with and without using the auxiliary air heating unit for eight hours in the premises of Eastern University. In order to compare and analyze the performance of the solar drying system, controlled drying experiments were also carried out in open sun on equal mass samples of bitter gourd kept adjacent to the solar drying system. The temperature profiles of the inlet, interface, and outlet of the solar tunnel dryer were compared with ambient temperature, and the wet basis moisture content obtained during the system drying were compared with the open sun drying. The performance of the dryer system has been investigated in terms of temperature profile in the drying area; moisture contents, moisture ratio and effective moisture diffusivity of bitter gourd samples with time of the day. Analysis on bitter gourd samples reveal that the system with the auxiliary air heating unit exhibits enhanced performance compared to the dryer without the auxiliary unit. The moisture ratio decreases exponentially as predicted by logarithmic model. The effective moisture diffusivity values of bitter gourd drying were determined based on Fick’s Second Diffusion model.
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带辅助平板太阳能空气加热器的苦瓜干燥太阳能隧道式干燥机(<em>苦瓜</em>)
设计并建造了太阳能隧道式干燥机及其配套的太阳能空气加热装置。太阳能隧道式干燥机具有集热室和干燥室,其由顶部有孔的板隔开,用于空气循环。在东方大学室内,对苦瓜切片样品在有和不使用辅助空气加热装置的太阳能干燥系统中进行了8小时的干燥实验。为了对太阳能干燥系统的性能进行比较和分析,还对放置在太阳能干燥系统旁边的等质量苦瓜样品进行了露天对照干燥试验。对太阳能隧道式干燥机的入口、界面和出口温度分布与环境温度进行了比较,并对系统干燥过程中获得的湿基水分含量与开放式太阳干燥进行了比较。干燥系统的性能在干燥区域的温度分布方面进行了研究;苦瓜样品含水率、含水率和有效水分扩散率随时间的变化。对苦瓜样品的分析表明,与没有辅助装置的干燥机相比,有辅助空气加热装置的系统表现出更高的性能。根据对数模型预测,含水率呈指数递减。利用菲克第二扩散模型确定了苦瓜干燥过程中水分的有效扩散系数。
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来源期刊
Philippine Journal of Science
Philippine Journal of Science Multidisciplinary-Multidisciplinary
CiteScore
1.20
自引率
0.00%
发文量
55
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