Bekele Endeshaw Alemu, Ancha Venkata Ramayya
Faculty of Mechanical Engineering, Jimma Institute of Technology, Jimma University, P.O.Box:378, Jimma, Ethiopia.
Heliyon. 2022 Sep 16;8(9):e10629. doi: 10.1016/j.heliyon.2022.e10629. eCollection 2022 Sep.
The global population growth, climate change effects, and the rapid decline in the stock of fossil fuels increase the demand for food, water, and energy. Irrigation technologies are essential in negating poverty and food insecurity in a developing country while promoting sustainable development goals. However, rain-fed agricultural activities and the lack of modern irrigation technologies in Ethiopia aggravate the problem. This work presents a transient performance investigation of a solar dish concentrator coupled with a Stirling engine and thermoelectric generator for the small-scale irrigation system. A solar dish concentrator with a 2.8 m aperture diameter and 0.4 m depth was used, and Stirling engine analysis was performed using a second-order adiabatic model. System performance was investigated at different operating parameters to predict output power and pump flow rate variation with solar time for a selected irrigation season. Results show that at a heat source temperature of 413.8 K, the thermoelectric unit gives maximum electrical power of 5.2 W at an efficiency of 2.78%. At the same time, the Stirling engine-driven pump provides a cumulative flow rate of 173,594.95 L per day at a thermal efficiency of 18.61%. The output power and pump flow rate reach their maximum at noontime for all selected irrigation seasons. The effect of regenerator effectiveness on the thermal efficiency of the Stirling engine was also examined, and the findings indicate that the Stirling engine's thermal efficiency rises with regenerator effectiveness. Using a solar thermal irrigation system in a location with a high solar radiation potential allows small farmers to generate more income and contribute to the country's food security.
全球人口增长、气候变化影响以及化石燃料储备的迅速减少,增加了对食物、水和能源的需求。灌溉技术对于消除发展中国家的贫困和粮食不安全状况、促进可持续发展目标至关重要。然而,埃塞俄比亚的雨养农业活动以及现代灌溉技术的匮乏加剧了这一问题。本文针对小型灌溉系统,对抛物面太阳能聚光器与斯特林发动机及热电发电机的瞬态性能进行了研究。使用了孔径为2.8米、深度为0.4米的抛物面太阳能聚光器,并采用二阶绝热模型对斯特林发动机进行分析。针对选定的灌溉季节,在不同运行参数下研究了系统性能,以预测输出功率和泵流量随太阳时间的变化。结果表明,在热源温度为413.8K时,热电装置的最大电功率为5.2W,效率为2.78%。同时,斯特林发动机驱动的泵每天的累计流量为173594.95升,热效率为18.61%。在所有选定的灌溉季节,输出功率和泵流量在中午达到最大值。还研究了回热器效率对斯特林发动机热效率的影响,结果表明,斯特林发动机的热效率随回热器效率的提高而提高。在太阳能辐射潜力高的地区使用太阳能热灌溉系统,可使小农户增加收入,并为国家的粮食安全做出贡献。