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Techno-economic analysis of an autonomous power system integrating hydrogen technology as energy storage medium

机译:以氢技术为储能介质的自主发电系统的技术经济分析

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摘要

Two different options for the autonomous power supply of rural or/and remote buildings are examined in this study. The first one involves a PV - diesel based power system, while the second one integrates RES and hydrogen technologies for the development of a self - sustained power system. The main objective is the replacement of the diesel generator and a comparison between these two options for autonomous power supply. Model simulations of the two power systems before and after the replacement, an optimization of the component sizes and a techno - economic analysis have been performed for the purpose of this study. A sensitivity analysis taking into account future cost scenarios for hydrogen technologies is also presented. The results clearly show that the Cost of Energy Produced (COE) from the PV - hydrogen technologies power system is extremely higher than the PV - diesel power system. However, the adopted PV - hydrogen technologies power system reduces to zero the Green - House Gas (GHC) emissions. Moreover, the sensitivity analysis indicates that COE for the latter system can be further reduced by approximately 50% compared to its initial value. This could be achieved by reducing critical COE's parameters, such as PEM electrolyser and fuel cell capital costs. Hence, a possible reduction on the capital costs of hydrogen energy equipment in combination with emissions reduction mentioned above could make hydrogen - based power systems more competitive.
机译:在这项研究中,研究了农村或/和偏远建筑物的自治电源的两种不同选择。第一个涉及基于PV的柴油发电系统,而第二个则集成了RES和氢能技术以开发自持式电力系统。主要目的是更换柴油发电机,并比较这两种自动电源选项。为了进行此研究,已对两个电源系统在更换前后的模型进行了仿真,对组件尺寸进行了优化,并进行了技术经济分析。还介绍了考虑到氢技术未来成本情景的敏感性分析。结果清楚地表明,PV-氢技术发电系统产生的能源成本(COE)远远高于PV-柴油发电系统。但是,采用的PV-氢技术电力系统将温室气体(GHC)排放量降低到零。此外,敏感性分析表明,与初始值相比,后一种系统的COE可以进一步降低约50%。这可以通过降低关键COE的参数(例如PEM电解槽和燃料电池的资本成本)来实现。因此,将氢能设备的资本成本与上述减排相结合的可能降低可能会使基于氢的电力系统更具竞争力。

著录项

  • 来源
    《Renewable energy》 |2011年第1期|p.118-124|共7页
  • 作者单位

    Center for Renewable Energy Sources (CRES), RES & Hydrogen Technologies, 19th km Marathon Avenue, CR 19009 Pikermi, Greece,Laboratory of Fuels and Lubricants Technology, School of Chemical Engineering, National Technical University of Athens, 9 Iroon Polytechniou Street, Zografou Campus,157 80 Athens, Greece,Center for Renewable Energy Sources (CRES), RES & Hydrogen Technologies, 19th km Marathon Avenue, CR 19009 Pikermi, Greece;

    Center for Renewable Energy Sources (CRES), RES & Hydrogen Technologies, 19th km Marathon Avenue, CR 19009 Pikermi, Greece;

    Center for Renewable Energy Sources (CRES), RES & Hydrogen Technologies, 19th km Marathon Avenue, CR 19009 Pikermi, Greece;

    Center for Renewable Energy Sources (CRES), RES & Hydrogen Technologies, 19th km Marathon Avenue, CR 19009 Pikermi, Greece;

    Laboratory of Fuels and Lubricants Technology, School of Chemical Engineering, National Technical University of Athens, 9 Iroon Polytechniou Street, Zografou Campus,157 80 Athens, Greece;

    Laboratory of Fuels and Lubricants Technology, School of Chemical Engineering, National Technical University of Athens, 9 Iroon Polytechniou Street, Zografou Campus,157 80 Athens, Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    autonomous power system; energy storage; hydrogen technologies; hybrid energy system;

    机译:自治电力系统;储能;氢技术;混合能源系统;
  • 入库时间 2022-08-18 00:26:31

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