Bouregba Hicham, Hachemi Madjid, Samatar Abdullahi Mohamed, Mekhilef Saad, Stojcevski Alex, Seyedmahmoudian Mehdi, Hamidat Abderrahmane
Laboratoire Energétique Mécanique & Ingénierie, Faculté de Technologie, Université M'Hamed Bougara, Boumerdés, Algeria.
Power Electronics and Renewable Energy Research Laboratory, Department of Electrical Engineering, University of Malaya, Kuala Lumpur, 50603, Malaysia.
Heliyon. 2024 Nov 22;10(23):e40650. doi: 10.1016/j.heliyon.2024.e40650. eCollection 2024 Dec 15.
This study evaluates the energy efficiency of an urban dairy farm in Tlemcen, Algeria, by assessing the feasibility of a grid-connected photovoltaic (PV)/wind hybrid energy system. Using HOMER and MATLAB software, the study explores the potential for replacing the farm's existing energy systems with a hybrid system integrated into a low-voltage electrical grid. The HOMER software determined the configuration that resulted in the lowest net present cost, energy cost in kWh, greenhouse gas emission mitigation, and renewable fraction (RF). The selected specifications of the renewable energy (RE) system components, power rates, and costs are based on the local market. The results indicate a net current cost of $106,117.90 and a levelized cost of energy of $0.0959/kWh, with a reduction in CO emissions by 594 kg/day. The system delivers 98 % RF with 4 kWh/m/day medium solar radiation and 4 m/s wind speeds, and the ideal investment recovery takes 33 months. On the other hand, generation includes 933 kWh/year in grid buys and 42,488 kWh/year in sold-backs. The PV array generates 5457 kWh annually, the wind turbine produces 40,761 kWh/year, and an additional 939 kWh/year is purchased from the grid. Additionally, hybrid power systems in dairy farms reduce energy consumption by 90 % and increase milk production by 40 %, promoting sustainable agriculture. The findings highlight the importance of adopting RE systems in agricultural operations to achieve both economic and environmental sustainability.
本研究通过评估并网光伏/风能混合能源系统的可行性,对阿尔及利亚特莱姆森市的一个城市奶牛场的能源效率进行了评估。该研究使用HOMER和MATLAB软件,探索了用集成到低压电网中的混合系统取代该农场现有能源系统的潜力。HOMER软件确定了能带来最低净现值成本、每千瓦时能源成本、温室气体减排量和可再生能源占比(RF)的配置。可再生能源(RE)系统组件、电价和成本的选定规格基于当地市场。结果表明,净现值成本为美元106,117.90,平准化能源成本为0.0959美元/千瓦时,每天减少二氧化碳排放量594千克。在中等太阳辐射为4千瓦时/平方米/天、风速为4米/秒的情况下,该系统的可再生能源占比达到98%,理想的投资回收期为33个月。另一方面,发电量包括每年从电网购入933千瓦时和每年向电网售电42,488千瓦时。光伏阵列每年发电5457千瓦时,风力涡轮机每年发电40,761千瓦时,另外还从电网购入939千瓦时。此外,奶牛场中的混合电力系统可将能源消耗降低90%,并使牛奶产量提高40%,促进可持续农业发展。研究结果凸显了在农业生产中采用可再生能源系统以实现经济和环境可持续性的重要性。