离网混合能源系统的技术经济分析

A. E. Akan
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引用次数: 3

摘要

化石能源的减少和日益严重的环境问题使人们日益倾向于使用可再生能源。可再生能源的潜力因能源生产地区的不同而不同。因此,在对基于可再生能源的能源转换系统进行投资决策之前,从技术和经济角度对所选系统进行良好的可行性研究是至关重要的。在本研究中,通过对泰克达尔省(40o58.7亿N, 27o30.7亿E)农村地区一座独立住宅的风能-太阳能可再生能源混合系统的技术经济分析,研究了最合适的设备和容量。调查使用HOMER Pro(可再生电力混合优化模型)程序进行。tekirdaul省的风能和太阳能潜力是从NASA可再生能源数据库中获得的,该数据库添加到HOMER Pro程序中。选取样本房日用电量为11.27 kWh,当前峰值用电负荷为2.39 kW。与交流母线连接的风力涡轮机,与直流母线连接的太阳能集热器和电池组,以及能量转换系统中在交流和直流母线之间转换能量的转换器。为了确定系统元件的最佳容量,使用HOMER Pro进行了27486次不同的仿真。从这些系统中选择最合适的系统是根据最低净当前成本(NPC)值确定的。此外,还研究了不同风速下的发电能力。据此,将安装容量为6.25 kW的太阳能板、容量为1 kW的PV-MPPT、2台容量为1 kW的风力发电机、8个容量为6V-167 Ah的锂离子电池、2.5 kW的变流器等,每年将产生5433 kWh的电能。此外,已确定61.8%的生产能源将来自太阳能,38.2%来自风能,投资的简单回收期为14年。认为本研究将为研究人员和投资者提供有价值的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TECHNO-ECONOMIC ANALYSIS OF AN OFF-GRID HYBRID ENERGY SYSTEM WITH HOMER PRO
The decrease in fossil-based energy sources and increasing environmental problems increase the tendency to renewable energy sources day by day. The potential of renewable energy sources differs according to the region where the energy will be produced. For this reason, it is crucial to conduct a good feasibility study that deals with the selected systems from a technical and economic point of view before making an investment decision on energy conversion systems based on renewable energy sources. In this study, the most suitable equipment and capacities were investigated by examining the techno-economic analysis of a hybrid system created with wind-solar renewable energies for a detached house, which is considered off-grid, in a rural area of Tekirdağ province (40o58.7ı N, 27o30.7ı E). Investigations were carried out using the HOMER Pro (Hybrid Optimization Model for Electric Renewable) program. The wind and solar energy potential of Tekirdağ province were obtained from the NASA renewable energy resources database added to the HOMER Pro program. The daily electricity requirement of the sample house was chosen as 11.27 kWh, and the current peak electrical load was chosen as 2.39 kW. A wind turbine is connected to the AC busbars, solar collectors and battery group connected to the DC busbars, and a converter that converts energy between AC and DC busbars in the energy conversion system. In order to determine the optimum capacities of the system elements, 27486 different simulations were performed by HOMER Pro. The selection of the most suitable system among these was determined according to the lowest net present cost (NPC) value. In addition, the energy production capacities that will occur in the case of different wind speeds were also investigated. Accordingly, the system to be installed with a solar panel with a capacity of 6.25 kW, PV-MPPT with a capacity of 1 kW, 2 wind turbines with a capacity of 1 kW, 8 Lithium-ion batteries with a capacity of 6V-167 Ah, and a converter with a capacity of 2.5 kW has been determined will generate electrical energy of 5433 kWh per year. In addition, it has been determined that 61.8% of this produced energy will be obtained from solar energy and 38.2% from wind energy, and the simple payback period of the investment will be 14 years. It is thought that this study will provide valuable information to researchers and investors.
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