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Power-to-Gas integration in the Transition towards Future Urban Energy Systems

机译:向未来的城市能源系统过渡中的燃气一体化

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Temperature levels play a key role in the thermal energy demand of urban contexts affecting their associated primary energy consumption and Renewable Energy Fraction. A Smart Heating strategy accounts for those supply features requiring new solutions to be effectively renewable and to solve the RES capacity firming. Power-to-Gas (P2G) is the way to decarbonize the energy supply chain as fraction of Hybrid fuels, combination of fossil ones and Renewable Hydrogen, as immediate responsive storage solution. While, Power-To-Heat is conceived as the strategy to modernize the high and medium temperature heating systems by electricity-driven machines to switch from Fuel-to-Heat to Electricity-to-Heat solutions. The authors investigated on different urban energy scenarios at RES share increase from 25% up to 50% in the energy mix to highlight strengths and weaknesses of the P2G applications. Primary Energy Consumption was chosen as the objective function. Three Reference Cities were chosen as reference scenarios. Moreover, the analytical models of P2G was designed and implemented in the reference energy system. The results of the twelve scenarios, four for each Reference City were evaluated in terms of amount of Renewable Heat delivered. Finally, the interaction between P2G and renewable heat production was evaluated. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:温度水平在影响城市环境热能需求的主要能源消耗和可再生能源份额中起着关键作用。智能供暖策略考虑了那些需要新解决方案才能有效更新并解决RES容量问题的供应特征。瓦斯发电(P2G)是一种将能源供应链脱碳的方法,它是混合燃料的一部分,是化石燃料和可再生氢的结合,是即时响应的存储解决方案。同时,“以热为能”被认为是通过电力驱动的机器实现高温和中温加热系统现代化的策略,以从“燃料到热”转换为“电到热”解决方案。作者针对不同城市能源情景下的可再生能源进行了调查,研究结果表明,可再生能源在能源结构中所占份额从25%上升到50%,以突显P2G应用的优缺点。选择一次能源消耗作为目标函数。选择了三个参考城市作为参考方案。此外,在参考能源系统中设计并实现了P2G的分析模型。根据交付的可再生热量,评估了十二种情景的结果,每个参考城市四种。最后,评估了P2G和可再生热产生之间的相互作用。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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