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Pre-feasibility study of stand-alone hybrid energy systems for applications in eco-houses

机译:用于生态房屋的独立混合能源系统的预可行性研究

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In light of rising cost of fossil fuels and fears of its depletion, coupled with the increase in energy demand and the rise in pollution levels, governments worldwide have had to look at alternative energy resources. Combining renewable energy generation like solar power with superior storage and conversion technology such as hydrogen storage, fuel cells and batteries offers a potential solution for a stand-alone power system. The aim of this paper was to assess the techno-economic feasibility of using a hybrid energy system with hydrogen fuel cell for application in an eco-house that will be built in Sultan Qaboos University, Muscat, Oman. Actual load data for a typical Omani house of a similar size as the eco-house was considered as the stand-alone load with an average energy consumption of 40 kW/day and 5 kW peak power demand. The National Renewable Energy Laboratory's Hybrid Optimisation Model for Electric Renewable software was used as a sizing and optimisation tool for the system. It was found that the total annual electrical energy production is 42,255 kW and the cost of energy for this hybrid system is 0.582 $/kW. During daylight time, when the solar radiation is high, the photovoltaics (PV) panels supplied most of the load requirements. Moreover, during the evening time the fuel cell mainly serves the house with the help of the batteries. The proposed system is capable of providing the required energy to the eco-house during the whole year using only the solar irradiance as the primary source.
机译:鉴于化石燃料成本的上涨和对其枯竭的担忧,再加上能源需求的增加和污染水平的提高,全世界的政府不得不寻找替代能源。将太阳能等可再生能源发电与氢存储,燃料电池和电池等卓越的存储和转换技术相结合,可为独立电源系统提供潜在的解决方案。本文的目的是评估在阿曼马斯喀特苏丹卡布斯大学建造的生态住宅中使用带有氢燃料电池的混合能源系统的技术经济可行性。典型的阿曼房屋的实际负荷数据与生态房屋的大小类似,被视为独立负荷,平均能耗为40 kW /天,峰值电力需求为5 kW。国家可再生能源实验室的电力可再生软件混合优化模型被用作系统的规模和优化工具。结果发现,年总电能产量为42,255 kW,该混合动力系统的能源成本为0.582 $ / kW。在白天,当太阳辐射很高时,光伏(PV)面板满足了大部分负载需求。此外,在晚上,燃料电池主要在电池的帮助下为房屋供电。拟议的系统能够仅使用太阳辐照度作为主要能源,全年为生态住宅提供所需的能源。

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