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首页> 外文期刊>International journal of hydrogen energy >Solar hydrogen from North Africa to Europe through greenstream: A simulation-based analysis of blending scenarios and production plant sizing
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Solar hydrogen from North Africa to Europe through greenstream: A simulation-based analysis of blending scenarios and production plant sizing

机译:来自北非到欧洲的太阳氢通过绿色:基于模拟的混合情景和生产厂尺寸的分析

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Blending green hydrogen within the gas infrastructure is seen as the first move towards Europe's climate neutrality by 2050. Especially, Europe and North African have privileged role in energy cooperation sharing a woven and complex set of natural resources, knowledge, infrastructure, clear goals towards sustainable development. Developing common projects about hydrogen can mutually help both Europe and North Africa to achieve more sustainable, reliable and modern energy systems.This paper simulates the Greenstream gas corridor (connecting Libya to Italy) under increasing hydrogen blending scenarios using a transient and multi-component fluid -dynamic model of the gas transmission system.The additional compression energy required and the compressors & rsquo; operating hours are evaluated under the hypothesis that the energy content of the transported gas is maintained. The hydrogen profiles needed to generate the blends are obtained and used to optimally size a photovoltaic-powered electrolysis system, minimizing the compressed hydrogen storage.The results indicate that the additional energy costs of transporting hydrogen blends are up to 32.5% higher than natural gas transport, while negligibly impacting the overall efficiency of energy transport. The mismatch between solar hydrogen production and pipeline receiving potential highlights a challenge to be tackled to boost intersectoral integration.(c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:燃气基础设施内的混合绿色氢被视为欧洲气候中立的第一次举动到2050年。特别是,欧洲和北非在能源合作中有特色作用,共享一系列编织和复杂的自然资源,知识,基础设施,可持续的明确目标发展。制定关于氢气的普通项目可以相互帮助欧洲和北非实现更可持续,可靠和现代的能源系统。本文在增加瞬态和多分量流体的增加的氢混合情景下模拟绿色气体走廊(将利比亚连接到意大利) - 燃气传动系统的动态模型。所需的额外压缩能量和压缩机和rsquo;在假设下进行操作时间,即维持运输气体的能量含量。获得产生共混物所需的氢型材,并用于最佳地尺寸光伏供电的电解系统,最小化压缩的氢气储存。结果表明,运输氢气共混物的额外能量成本高于天然气运输的32.5% ,虽然忽略了能源运输的整体效率。太阳氢生产与管道之间的不匹配突出了挑战,以促进跨部门集成。(c)2021氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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