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Energy flexibility in multi-family houses heated by thermally activated building systems
Energy and Buildings ( IF 6.6 ) Pub Date : 2025-01-17 , DOI: 10.1016/j.enbuild.2025.115345
J. Lind, F. Ottermo

The transition to a sustainable energy system with high penetration of renewable energy sources increases the need for demand-side energy flexibility. One way to achieve such flexibility is to utilize the thermal inertia of buildings; flexibility can be provided by storing energy in the thermal mass and using it for load shifting. The storage potential in the mass of buildings depends, among other things, on the type of heat emission system. In this paper, the flexibility potential of a thermally activated building system was compared to an embedded surface system and a radiator system, using an existing well-insulated multi-family house as case building.

中文翻译:


通过热激活建筑系统供暖的多户住宅的能源灵活性



向可再生能源渗透率高的可持续能源系统的过渡增加了对需求侧能源灵活性的需求。实现这种灵活性的一种方法是利用建筑物的热惯性;通过将能量储存在热质量中并将其用于负载转移,可以提供灵活性。建筑物中的存储潜力主要取决于热排放系统的类型。在本文中,将热活化建筑系统的灵活性潜力与嵌入式表面系统和散热器系统进行了比较,使用现有的隔热良好的多户住宅作为案例建筑。
更新日期:2025-01-17
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