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Evaluation of fuel-switching opportunities in the residential sector

机译:评估住宅部门的燃料转换机会

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The aim of this paper is to analyse the impact of different natural gas and electricity end-use technologies in the residential sector, which compete among themselves in terms of energy consumption and carbon emissions. The analysis of 17 different technology options, which were chosen in order to match the consumption behaviour of a typical Portuguese family, has shown that the use of electric heat pumps, both for space and water-heating, combined with the use of a natural gas cooker, leads to the lowest energy consumption and to the lowest environmental impacts in terms of carbon emissions. Considering only the running costs, this choice is 45% more economic than having a natural gas centralised heating system combined with a gas cooker, and is 60% more economic than having an electric resistance space heater combined with an electric storage water heater and electric cooker, which is the worst case. The life cycle cost (LCC) analysis shows that the economic optimum is reached by the combination of a natural gas water heater with an electric storage space heater, and a natural gas cooker. The cost of conserved carbon (CCC) analysis shows that the combination of an electric heat pump water heater with an electric storage space heater, and a natural gas cooker is the best option in terms of environmental performance.
机译:本文的目的是分析住宅领域中不同的天然气和电力最终使用技术的影响,这些技术在能源消耗和碳排放方面相互竞争。为了与典型的葡萄牙家庭的消费行为相匹配而对17种不同的技术选择进行了分析,结果表明,将用于空间和水加热的电动热泵与天然气的使用相结合炊具可降低能耗,并减少碳排放对环境的影响。仅考虑运行成本,此选择比将天然气集中供热系统与燃气灶结合使用的经济性高45%,比将电阻空间加热器与储水热水器和电炊具结合的经济性高60% ,这是最坏的情况。生命周期成本(LCC)分析表明,天然气热水器与蓄电空间加热器和天然气炊具的组合可实现经济最佳。保守碳(CCC)的成本分析表明,就环境性能而言,将电热泵热水器与蓄电空间加热器以及天然气炊具结合使用是最佳选择。

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