CONSTRUCTION AND PERFORMANCE EVALUATION OF AN INTEGRATED SOLAR COOKING AND DRYING SYSTEM

Inuwa Jibrin, M. M. Garba, G. M. Argungu, M. L. Mohammed, Usman Anas
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Abstract

An integrated solar cooking and solar drying system was developed using locally available materials. The system performs both functions of cooking and drying simultaneously. Performance evaluation of the system was carried out using tomatoes for drying; while rice, beans and eggs were used to carryout cooking experiment. For the purpose of performance evaluation, total global radiation, ambient temperature, humidity, water temperature were monitored, taken and recorded. Results obtained from the system and that of the non-integrated systems were compared using excel as a statistical tool for analysis to ascertain the performance of the integrated system. The average temperatures recorded in the integrated system during drying were 45.3, 46.0 and 45.9, while that of the non-integrated system were 40.2, 39.9 and 39.7. The average temperatures recorded during cooking of egg, beans and rice using the integrated system were 83.1, 83.4 and 78.2, while that of the non-integrated system were 68.8, 86.3 and 65.0. This indicates higher heat generation and faster drying and cooking rates in the integrated system than the non-integrated system. The system has a total cost estimate of N30,600 with an added advantage of cooking and drying simultaneously. It is portable and can help in improving the ambient air quality. Furthermore, the integrated system will occupy less space and gives higher efficiency compared to the conventional single use systems.
太阳能烹饪和干燥综合系统的建造与性能评估
利用当地现有的材料,开发了一个集成的太阳能烹饪和太阳能干燥系统。该系统可同时实现烹饪和干燥两种功能。该系统的性能评估使用西红柿进行烘干;使用大米、豆类和鸡蛋进行烹饪实验。为了进行性能评估,对全球总辐射、环境温度、湿度、水温进行了监测、采集和记录。使用 excel 作为统计分析工具,对系统和非集成系统的结果进行比较,以确定集成系统的性能。综合系统在干燥过程中记录的平均温度分别为 45.3、46.0 和 45.9,而非综合系统的平均温度分别为 40.2、39.9 和 39.7。使用集成系统烹饪鸡蛋、豆类和大米时记录到的平均温度分别为 83.1、83.4 和 78.2,而非集成系统则分别为 68.8、86.3 和 65.0。这表明与非集成系统相比,集成系统的发热量更高,干燥和烹饪速度更快。该系统的总成本估计为 30 600 纳元,其额外优势是可以同时进行烹饪和干燥。它便于携带,有助于改善环境空气质量。此外,与传统的一次性系统相比,集成系统占用空间更小,效率更高。
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