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Integration of distributed energy storage into net-zero energy district systems: Optimum design and operation

机译:将分布式能源存储集成到零净能源区域系统中:最佳设计和运行

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摘要

A net-zero energy district is any neighborhood where the consumption of the buildings is offset by on-building generation on an annual basis. In this study, a net-zero energy district is identified among the set of optimal solutions and the effects of storage on its performance is investigated. It is assumed the model simultaneously optimizes the location of host buildings (energy generators), type of technologies and associated size, and the energy distribution network layout together with the optimal operating strategy. The optimization model addresses all technologies with a special focus on the effect of application of energy storage. Two types of energy storage are considered inside each building: thermal energy storage (hot water tank) and electrical energy storage (battery bank). The model is applied to the new part of a district energy system located in Switzerland. The best integrated district energy systems are presented as a set of Pareto optimal solutions by minimizing both the total annualized cost and equivalent CO2emission while ensuring the reliable system operation to cover the demand. The results indicated that selection of the proposed optimal district energy system along with the storage brings great economic and environmental benefits in comparison to all other scenarios (conventional energy system, stand-alone system, and net zero-energy without storage).
机译:零净能耗区是指建筑消耗量每年被建筑物产生的能耗抵消的任何社区。在这项研究中,在最佳解决方案集合中确定了零净能量区,并研究了存储对其性能的影响。假设该模型同时优化了宿主建筑物(能源生成器)的位置,技术类型和相关大小以及能源分配网络布局以及最佳运行策略。优化模型针对所有技术,特别关注储能应用的效果。每个建筑物内部考虑两种类型的能量存储:热能存储(热水箱)和电能存储(电池组)。该模型应用于位于瑞士的区域能源系统的新部分。最佳集成的区域能源系统是一组Pareto最佳解决方案,它通过最小化年度总成本和等效CO2排放,同时确保可靠的系统运行来满足需求。结果表明,与所有其他方案(常规能源系统,独立系统和无存储净零能耗)相比,选择建议的最佳区域能源系统以及存储带来了巨大的经济和环境效益。

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