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A multi-layer energy modelling methodology to assess the impact of heat-electricity integration strategies: The case of the residential cooking sector in Italy

机译:评估热电一体化策略影响的多层能源建模方法:意大利的住宅烹饪行业

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To support the ongoing transition towards smart and decarbonised energy systems, energy models need to expand their scope and predictive capabilities. To this end, this study proposes a multi-layer modelling methodology that soft-links (i) a stochastic bottom-up load curves estimation model, (ii) a technology rich energy system optimisation model (Calliope) and (iii) a Multi-Regional Input-Output model (Exiobase v.3), and applies it to investigate the economic and environmental consequences entailed by a massive replacement of traditional gas-fired kitchens with induction kitchens within the Italian residential sector. Two scenarios are considered for the analysis: (i) business as usual (BAU, 2015 energy system configuration), and (ii) national energy strategy (SEN, configuration prospected in 2030). The results show how the intervention produces positive net effects on the primary energy balance of the energy sector only when sustained by adequate shares of renewables, as in the SEN (-1.5 TWh.y(-1)); otherwise, increased operation of fossil-fuel plants offsets gas savings (BAU, +2 TWh.y(-1)). Nonetheless, feedbacks on other productive sectors entail additional energy consumption and emissions, thus counterpoising positive effects obtained within the energy sector even in the SEN scenario. Still, higher renewables penetration reduces overall additional emissions from 2.07 Mton.y(-1) for BAU to 0.88 Mton.y(-1) for the SEN. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了支持向智能和脱碳能源系统的持续过渡,能源模型需要扩展其范围和预测能力。为此,本研究提出了一种多层建模方法,可以软链接(i)随机的自下而上的负荷曲线估计模型,(ii)富含技术的能源系统优化模型(Calliope)和(iii)多种区域投入产出模型(Exiobase v.3),并将其用于调查意大利居民区内用感应厨房大量替代传统燃气厨房所带来的经济和环境后果。分析时考虑了两种情况:(i)一切照旧(BAU,2015年能源系统配置),以及(ii)国家能源战略(SEN,2030年预计配置)。结果表明,只有在有足够的可再生能源份额的支持下,干预措施才能对能源部门的一次能源平衡产生积极的净影响,如SEN(-1.5 TWh.y(-1));否则,增加化石燃料工厂的运营可以抵消天然气的节省(BAU,+ 2 TWh.y(-1))。但是,对其他生产部门的反馈会带来额外的能源消耗和排放,因此,即使在有SEN的情况下,也抵消了在能源部门内获得的积极影响。尽管如此,更高的可再生能源渗透率仍将总体额外排放量从BAU的2.07 Mton.y(-1)降至SEN的0.88 Mton.y(-1)。 (C)2019 Elsevier Ltd.保留所有权利。

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