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SolSpaces-Testing and performance analysis of a segmented sorption store for solar thermal space heating

机译:太阳能热空间加热分段吸附储存的唯一测试与性能分析

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An entirely solar based supply of heat for energy efficient buildings is the motivation for the activities within the research project SolSpaces. A solar heating system, including a sorption store for seasonal energy storage, has been developed to approach this objective. Sorption processes are well suited for long term energy storage, due to the quasi loss free storage of energy and the high energy storage density, compared to water stores. However, large sorption stores go along with some kind of challenges concerning the efficient supply of the stored heat. A new sorption store, subdivided into several segments, has been developed to meet the requirements for an efficient heat supply despite the relatively large size of the store. The segmentation leads to an improved operation behaviour. The segmented sorption store has been built up in Mi-scale in a research building for testing and demonstration. Experimental investigations are carried out to analyse the achievable temperature lift and charging and discharging power and to demonstrate the thermal performance of the store. Key parameters, such as energy storage density, will be determined. In this paper, the solar heating concept will be presented, focussing on the segmented sorption store. The design of the sorption store will be explained, experimental results and the operation behaviour will be shown and the performance will be discussed.
机译:全面基于太阳能的高型高效建筑供应是研究项目集合中的活动的动机。已经开发出一种太阳能加热系统,包括用于季节性能量存储的吸附储存,以实现这一目标。与水储存相比,吸附过程非常适合长期储能,由于准损失和高能量储存密度,与水储存相比。然而,大型吸附店与有效供应的储存热量的某种挑战一起进行。尽管商店尺寸相对较大,但已经开发出一种新的吸附商店,以满足高效供热的要求。分段导致改进的操作行为。分段的吸附店已在用于测试和演示的研究建筑中建立了MI级。进行了实验研究,以分析可实现的温度提升和充电和放电功率,并展示商店的热性能。将确定键参数,例如能量存储密度。本文将呈现太阳能加热概念,侧重于分段的吸附店。将解释吸附店的设计,将显示实验结果和操作行为,并将讨论性能。

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