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Facade-integrated massive solar-thermal collectors combined with long-term underground heat storage for space heating

机译:立面型大型太阳能热收集器结合长期地下热量储存空间加热

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This work shows how facades of industrial buildings can be used as a heat source for a heat pump heating system. Opaque sections of the building skin are formed by facade-integrated massive solar-thermal collectors (FMSC) in order to collect solar radiation and heat from the ambient air. By means of a building-integrated long-term storage (BLTS), the heat collected during the summer period is conserved for utilization during the heating season. Depending on the current ambient conditions and the actual heat demand, different operating modes are to be applied: In part load with favorable external conditions the space heating demand is covered by direct use of the FMSC heat output. With rising heat demand and lower heat gain from ambient, heating is accomplished by a heat pump with FMSC or BLTS as heat source. With regard to architectural restrictions, FMSC surfaces have to be operated at temperatures above the dew point, avoiding formation of condensate or frost at the building surface. The performance of the system is modeled by means of TRNSYS, relying to available model types for the system components. The model of the core component, i.e. the FMSC, has been validated by a laboratory measurement. A design study has been carried out for an industrial building with a foot print of 1,300 m~2 and an annual heating demand of 82,000 kWh. Key aspect of the investigation is the identification of the most efficient system composition, characterized by the required size of collector area and heat storage volume.
机译:这项工作显示了工业建筑物的外立面可以用作热泵加热系统的热源。建筑物皮肤的不透明部分由立面集成的大型太阳能 - 热收集器(FMSC)形成,以便从环境空气中收集太阳辐射和热量。通过建筑物集成的长期储存(BLT),在夏季期间收集的热量在加热季节期间保守用于利用。根据当前环境条件和实际的热需求,应采用不同的操作模式:在有利的外部条件下,通过直接使用FMSC热输出来覆盖空间加热需求的部分负载。随着热需求上升和较低环境温度的热量增益,加热通过具有FMSC或BLT的热泵作为热源完成。关于建筑限制,FMSC表面必须在露点高于露点的温度下操作,避免在建筑物表面处形成冷凝物或霜冻。系统的性能由TRNSYS建模,依赖于系统组件的可用模型类型。核心组分的模型,即FMSC,通过实验室测量验证。为工业建筑进行了设计研究,脚印为1,300米〜2,每年供暖需求为82,000千瓦时。调查的关键方面是识别最有效的系统组合物,其特征在于收集器区域的所需尺寸和储热量。

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