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Optimization of a new renewable energy system for producing electricity, hydrogen and ammonia

机译:优化新型可再生能源系统生产电力,氢气和氨

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摘要

In this paper, an exergoeconomic analysis and optimization of a combined solar and wind energy based system is proposed. The trigeneration system produces ammonia, hydrogen and electricity through integrated solar photovoltaic panels and wind turbines. Also, an ammonia fuel cell unit is utilized for generating power during insufficient available energy. The overall exergetic efficiency is found to be 29.7% and the corresponding energetic efficiency is 28.5% under design conditions. In addition, the total cost rate is obtained as 63,345 $/h. Moreover, multi-objective optimization is performed with various decision variables at different combinations of solar intensities and wind speeds, considering the maximization of exergy efficiency and minimization of total cost rates. The developed system provides better optimal operation points under high wind speeds. The optimal exergy efficiency is found to vary between 10.9% and 38.2% depending on the available solar and wind energy. The corresponding optimal total cost rates vary between 11,959 $/h and 59,755 $/h, respectively. Several parametric studies are also performed to determine the effects of changing system conditions on the thermodynamic and economic performance of the developed system.
机译:在本文中,提出了一种结合太阳能和风能系统的Exergo经济分析和优化。通过集成的太阳能光伏板和风力涡轮机产生氨,氢气和电力。而且,氨燃料电池单元用于在可用能量不足期间产生电力。在设计条件下,总体前进效率均为29.7%,相应的能量效率为28.5%。此外,总成本率获得为63,345美元/小时。此外,考虑到极出效率的最大化和总成本速率最小化,以不同组合的各种决策变量对多目标优化进行了多目标优化。开发系统在高风速下提供更好的最佳操作点。根据可用的太阳能和风能,发现最佳的高效效率在10.9%和38.2%之间变化。相应的最佳总成本率分别在11,959美元/ h和59,755美元/ h之间变化。还进行了几项参数研究以确定改变系统条件对发达系统热力学和经济性能的影响。

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