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Smart integration of photovoltaic production, heat pump and thermal energy storage in residential applications

机译:住宅应用中光伏生产,热泵和热能存储的智能集成

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摘要

The optimal design of distributed generation systems is of foremost importance to reduce fossil fuel consumption and mitigate the environmental impact of human activities in urban areas. Moreover, an efficient and integrated control strategy is needed for each of the components of a distributed generation plant, in order to reach the expected economic and environmental performances.In this paper, the transition from natural gas to electricity-based heating is evaluated for residential applications, considering the interplay between photovoltaic electricity produced on site and the thermal energy storage, to grant the optimal management of heating devices. The energy demand of an apartment building, under different climatic conditions, is taken as a reference and four power plant solutions are assessed in terms of energy cost and pollution reduction potential, compared to a baseline plant configuration. The performance of each power plant is analyzed assuming an optimized control strategy, which is determined through a graph-based methodology that was previously developed and validated by the authors. Outcomes from our study show that, if heat pumps are used instead of natural gas boilers, energy costs are reduced up to 41%, while CO2 emissions are reduced up to 73%, depending on the climatic conditions.Our results provide a sound basis for considering the larger penetration of photovoltaic plants as an effective solution towards cleaner and more efficient heating technologies for civil applications. The simultaneous utilization of heat pumps (as substitutes of boilers) and photovoltaic panels yields a positive synergy that nullifies the local pollution, drastically cuts the CO2 emission, and guarantees the economical sustainability of the investment in renewable energy sources without subsidiary mechanisms.
机译:分布式发电系统的优化设计对于减少化石燃料消耗和减轻城市地区人类活动对环境的影响至关重要。此外,分布式发电站的每个组件都需要一种有效的集成控制策略,以达到预期的经济和环境绩效。本文评估了住宅用天然气从天然气到电热的过渡应用中,考虑现场产生的光伏电力与热能存储之间的相互作用,以对加热设备进行最佳管理。将公寓大楼在不同气候条件下的能源需求作为参考,并与基准电厂配置相比,根据能源成本和减少污染的可能性评估了四种电厂解决方案。在假设优化控制策略的情况下对每个发电厂的性能进行分析,该控制策略是通过基于图形的方法确定的,该方法是作者先前开发和验证的。我们的研究结果表明,根据气候条件,如果使用热泵代替天然气锅炉,则能源成本最多可降低41%,而二氧化碳排放量最多可降低73%。考虑将光伏电站的更大普及率作为民用应用中更清洁,更高效的加热技术的有效解决方案。同时使用热泵(作为锅炉的替代品)和光伏板可产生积极的协同作用,从而消除当地的污染,大幅度减少CO2的排放,并保证在没有辅助机制的情况下可再生能源投资的经济可持续性。

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