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Optimal design and operation of thermal energy storage systems in micro-cogeneration plants

机译:微热植物热能储存系统的最佳设计与运行

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摘要

The implementation of micro-cogeneration plants in residential buildings requires a technical and economic viability study. This analysis depends greatly on the regulatory framework controlling this kind of installations, which is characterized by its variability and great uncertainty. Viability is also closely related to the sizing of devices and their integration within the plant, as well as to its global operation. Although different methods are used for sizing micro-cogeneration installations, there is no methodology to determine the optimal capacity of the thermal energy storage and the auxiliary generation system in the design phase. Since the optimal strategy of the whole plant is not taken into account in this project phase, the installation is usually oversized, decreasing the efficiency of the plant and increasing the overall cost. The aim of this paper is to analyze the viability study of micro-cogeneration systems with integrated thermal energy storage and determine the influence of this on the final results. Furthermore, a mathematical linear programming-based model is proposed, where the optimal behavior of the different devices is predicted in the design phase in order to determine the optimal sizing of both the tank and the auxiliary boiler. The developed model can be a useful tool in viability analysis and can easily be reproduced by engineers and researchers. In conclusion, the optimal integration and sizing of the thermal energy storage considerably improve the thermodynamic, economic and environmental results.
机译:在住宅建筑中实施微创植物需要技术和经济的活力研究。该分析大大取决于控制这种装置的监管框架,其特征在于其变异性和巨大的不确定性。可生存性也与设备的尺寸及其在工厂内的整合以及其全球操作密切相关。虽然不同的方法用于尺寸微热装置,但没有方法可以确定在设计阶段中的热能存储和辅助生成系统的最佳能力。由于在该项目阶段没有考虑整个工厂的最佳策略,因此安装通常超大,降低植物的效率并增加整体成本。本文的目的是分析微细胞系统的可行性研究,具有集成的热能存储,并确定最终结果的影响。此外,提出了一种基于数学线性编程的模型,其中在设计阶段预测了不同设备的最佳行为,以便确定罐和辅助锅炉的最佳尺寸。开发的模型可以是可行性分析中有用的工具,并且可以通过工程师和研究人员轻松再现。总之,热能储存的最佳整合和尺寸显着提高了热力学,经济和环境结果。

著录项

  • 来源
    《Applied Energy》 |2020年第may1期|114769.1-114793.23|共23页
  • 作者单位

    Univ Basque Country UPV EHU Fac Engn Bilbao ENEDI Res Grp Dept Thermal Engn Plaza Ingeniero Torres Quevedo 1 Bilbao 48013 Spain;

    Univ Basque Country UPV EHU Fac Engn Bilbao ENEDI Res Grp Dept Thermal Engn Plaza Ingeniero Torres Quevedo 1 Bilbao 48013 Spain;

    Univ Basque Country UPV EHU Fac Engn Bilbao ENEDI Res Grp Dept Thermal Engn Plaza Ingeniero Torres Quevedo 1 Bilbao 48013 Spain;

    Univ Basque Country UPV EHU Fac Engn Gipuzkoa ENEDI Res Grp Dept Thermal Engn Europa Plaza 1 Donostia San Sebastian 20018 Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Micro-cogeneration; Linear optimization; Hybrid systems; Economic analysis; Marginal costs;

    机译:微肿瘤;线性优化;混合系统;经济分析;边际成本;

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