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Design and simulation of the PV/PEM fuel cell based hybrid energy system using MATLAB/ Simulink for greenhouse application

机译:基于PV / PEM燃料电池的混合能源系统使用Matlab / Simulink进行温室应用的设计与仿真

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In this study, design and optimization of the hybrid renewable energy system consisting of Photovoltaic (PV)/Electrolyzer/Proton Exchange Membrane Fuel Cell (PEMFC) was investigated to provide electricity and heat for Greenhouse in S & sbquo; anlurfa (Turkey). The coupling of a photovoltaic system with PEMFC was preferred to supply continuous production of electric energy throughout the year. Additionally, produced heat from PEMFC was used to heating of the greenhouse by micro cogeneration application. The MATLAB/Simulink was applied to the design and optimization of the proposed hybrid system. In the designed system, solar energy was selected to produce the Hydrogen (H2) required to run the electrolyzer. In cases where the solar energy is not sufficient and cannot meet the electricity requirement for the electrolyzer; the H2 requirement for the operation of the PEMFC was met from the H2 storage tanks and energy continuity was ensured. The electrolyzer was designed for H2 demand of the 3 kW PEMFC which were met the greenhouse energy requirement. PEMFC based hybrid system has 48% electrical and 45% thermal efficiencies. According to optimization results obtained for the proposed hybrid system, the levelized cost of energy was found 0.117 $/kWh. The obtained results show the proposed PV/Electrolyzer/PEMFC hybrid power system provides an applicable option for powering stand-alone application in a self sustainable expedient. (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.commentSuperscript/Subscript Available/comment
机译:在本研究中,研究了由光伏(PV)/电解槽/质子交换膜燃料电池(PEMFC)组成的混合再生能源系统的设计和优化,为S&SBQUO的温室提供电和热量; anlurfa(土耳其)。光伏系统与PEMFC的耦合是优选的,以供应全年的连续生产电能。另外,通过微热应用,从PEMFC的产生热量加热温室。 MATLAB / SIMULINK应用于所提出的混合系统的设计和优化。在设计的系统中,选择太阳能以产生运行电解槽所需的氢气(H2)。在太阳能不足的情况下,不能满足电解槽的电力要求;从H2储罐达到PEMFC操作的H2要求,确保了能量连续性。电解槽专为3 kW PEMFC的H2需求而设计,这些需求符合温室能源需求。 PEMFC的混合系统具有48%的电气和45%的热效。根据所提出的杂交系统获得的优化结果,发现了0.117美元/千瓦时的能量的调整成本。所获得的结果表明,所提出的PV /电解器/ PEMFC混合动力系统提供适用的选择,用于在自我可持续的权宜之计中为独立应用提供支持。 (c)2021氢能出版物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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