Aryanfar Yashar, Alcaraz Jorge Luis García, Blanco Fernandez Julio, Georgiev Aleksandar G, Keçebaş Ali, Ragab Adham E, Ahmad Shabbir
Department of Electric Engineering and Computation. Autonomous University of Ciudad Juárez, Av. Del Charro 450 Norte, Col. Partido Romero, Juárez, Chihuahua, Mexico.
Department of Industrial Engineering and Manufacturing, Autonomous University of Ciudad Juárez. Av. Del Charro 450 Norte, Col. Partido Romero, Juárez, Chihuahua, Mexico.
Heliyon. 2024 Dec 6;10(24):e40975. doi: 10.1016/j.heliyon.2024.e40975. eCollection 2024 Dec 30.
This study explores the optimization and performance of a hybrid energy system combining a geothermal heat pump (GHP) with a wind turbine in Izmir, Turkey. Utilizing a 4E (Energy, Exergy, Economic, and Exergoenvironmental) analysis approach, the system aims to enhance winter heating efficiency. Geothermal heat pumps leverage the Earth's consistent temperatures for heating and cooling, offering a sustainable alternative to traditional energy sources. Key findings include a high coefficient of performance (COP) of 3.916 for the heat pump, a net power output of 118.9 kW, total energy efficiency of 67.93 %, and exergy efficiency of 45.18 %. Economically, the system proves viable with a unit exergy cost of 0.1246 $/kWh, highlighting its cost-effectiveness. The exergoenvironmental analysis demonstrates a factor of 0.8059, indicating a substantial reduction in environmental impact. The integration of geothermal and wind energy demonstrates substantial potential for sustainable energy solutions, crucial for environmental conservation and economic advancement. This comprehensive evaluation highlights the system's operational dynamics, presenting an innovative approach to renewable energy utilization.
本研究探讨了土耳其伊兹密尔市将地热热泵(GHP)与风力涡轮机相结合的混合能源系统的优化与性能。该系统采用4E(能源、㶲、经济和㶲环境)分析方法,旨在提高冬季供暖效率。地热热泵利用地球恒定的温度进行供热和制冷,为传统能源提供了一种可持续的替代方案。主要研究结果包括:热泵的性能系数(COP)高达3.916,净功率输出为118.9千瓦,总能源效率为67.93%,㶲效率为45.18%。在经济方面,该系统可行,单位㶲成本为0.1246美元/千瓦时,凸显了其成本效益。㶲环境分析显示系数为0.8059,表明对环境的影响大幅降低。地热能与风能的整合显示出可持续能源解决方案的巨大潜力,这对环境保护和经济发展至关重要。这一综合评估突出了该系统的运行动态,展示了一种创新的可再生能源利用方法。