Towards Positive Energy Districts: Energy Renovation of a Mediterranean District and Activation of Energy Flexibility

IF 0.6 Q4 GEOCHEMISTRY & GEOPHYSICS Solar-Terrestrial Physics Pub Date : 2023-05-06 DOI:10.3390/solar3020016
Ilaria Marotta, T. Péan, F. Guarino, S. Longo, M. Cellura, J. Salom
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Abstract

The paper presents the analysis of energy retrofitting, integration of renewable energy and activation of energy flexibility in a cluster of buildings in the surroundings of a port on the Mediterranean Sea in Southern Italy, with the aim of checking the potential for it to achieve the status of positive energy district (PED). The objective of this study is to improve the contemporaneity between local energy generation and energy demand and reduce CO2eq emissions by considering signals that reflect the environmental variability of the electricity grid, through flexibility solutions applied to the HVAC system. The proposed scenarios are based on the dynamic simulation of the district and analyze the effect of actions that activate the energy flexibility of buildings through advanced control strategies of the air conditioning system. The results show that the joint action of energy efficiency strategies, integration of solar energy and energy flexibility improves the environmental sustainability of the district and the balance of energy flows. Specifically, the activation of energy flexibility contributes to a 10% reduction in operational CO2eq emissions and increases in self-consumption of energy per year. The operational emissions of the district vary from the base value of 33.37 tons CO2eq/y to 19.52 tons CO2eq/y in the scenario based on the integration of solar energy systems and energy efficiency measures, and to 17.39 tons CO2eq/y when also the demand-side energy flexibility is activated.
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走向正能量区:地中海地区的能源改造与能源灵活性的激活
本文分析了意大利南部地中海港口周围的一群建筑的能源改造、可再生能源的整合和能源灵活性的激活,目的是检查其实现正能量区(PED)地位的潜力。本研究的目的是通过应用于暖通空调系统的灵活性解决方案,通过考虑反映电网环境可变性的信号,提高当地能源生产和能源需求之间的同时性,并减少二氧化碳当量排放。所提出的场景是基于该地区的动态模拟,并分析了通过空调系统的先进控制策略激活建筑能源灵活性的行动的效果。结果表明,能源效率策略、太阳能的整合和能源灵活性的共同作用提高了区域的环境可持续性和能源流动的平衡。具体来说,能源灵活性的激活有助于减少10%的运营二氧化碳当量排放量,并增加每年的自我能源消耗。在太阳能系统和能效措施整合的情况下,该地区的运营排放量从33.37吨二氧化碳当量/年的基准值到19.52吨二氧化碳当量/年,在需求侧能源灵活性激活的情况下,该地区的运营排放量为17.39吨二氧化碳当量/年。
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来源期刊
Solar-Terrestrial Physics
Solar-Terrestrial Physics GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.50
自引率
9.10%
发文量
38
审稿时长
12 weeks
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