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首页> 外文期刊>International journal of hydrogen energy >Size optimization of a hybrid photovoltaic/fuel cell grid connected power system including hydrogen storage
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Size optimization of a hybrid photovoltaic/fuel cell grid connected power system including hydrogen storage

机译:混合光伏/燃料电池网格连接电力系统的尺寸优化,包括储氢

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This paper describes the size optimization of a hybrid photovoltaic/fuel cell grid linked power system including hydrogen storage. The overall objective is the optimal sizing of a hybrid power system to satisfy the load demand of a university laboratory with an unreliable grid, with low energy cost and minimal carbon emissions. The aim is to shift from grid linked diesel power system to a clean and sustainable energy system. The optimum design architecture was established by adopting the energy-balance methods of HOMER (hybrid optimization model for electric renewables). Analysis of hourly simulations was performed to decide the optimal size, cost and performance of the hybrid system, using 22 years monthly averaged solar radiation data collected for Ambrose Alli University, Ekpoma (Lat. 6 degrees 44.3, Long. 6 degrees 4.8). The results showed that a hybrid system comprising 54.7 kW photovoltaic array, 7 kW fuel cell system, 14 kW power inverter and 3 kW electrolyzer with 8 kg hydrogen storage tank can sustainably augment the erratic grid with a very high renewable fraction of 96.7% at $0.0418/kWh. When compared with the conventional usage of grid/diesel generator system; energy cost saving of more than 88% and a return on investment of 41.3% with present worth of $308,965 can be derived in less than 3 years. The application of the optimally sized hybrid system would possibly help mitigate the rural-to urban drift and resolve the electricity problems hindering the economic growth in Nigeria. Moreover, the hybrid system can alleviate CO2 emissions from other power generation sources to make the environment cleaner and more eco-friendly. (c) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.commentSuperscript/Subscript Available/comment
机译:本文介绍了混合光伏/燃料电池电网连接电力系统的尺寸优化,包括储氢。整体目标是混合动力系统的最佳尺寸,以满足大学实验室的负载需求,具有不可靠的网格,具有低能源成本和最小的碳排放。目的是从网格连接的柴油电力系统转向干净,可持续的能源系统。通过采用HOMER的能量平衡方法来建立最佳设计架构(电动再生能源的混合优化模型)。对每小时模拟进行分析,以确定混合系统的最佳尺寸,成本和性能,使用22年为Ambrose Alli大学,Ekpoma(Lat。6度44.3,长。6度4.8)。结果表明,一种混合​​系统,包括54.7 kW光伏阵列,7 kW燃料电池系统,14 kW功率逆变器和3 kW电解槽,具有8 kg储氢罐可以可持续地增强不稳定的网格,其可再生型材为0.0418美元/ kWh。与网格/柴油发电机系统的常规使用相比;在不到3年的时间内,能源成本储蓄超过88%,投资41.3%的投资额为31.3%。最佳大小的混合系统的应用可能有助于减轻农村 - 城市漂移,解决妨碍尼日利亚经济增长的电力问题。此外,混合系统可以减轻其他发电源的二氧化碳排放,使环境清洁和更环保。 (c)2020氢能量出版物LLC。由elestvier有限公司出版。保留所有权利。&评论&上标/下标可用& /评论

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