在科隆使用热泵从污水中回收热量:一个案例研究

Aldo Perez, I. Stadler, Sebastian Janocha, C. Ferrando, G. Bonvicini, Georg Tillmann
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引用次数: 6

摘要

供暖和制冷占欧盟能源消耗的一半。工业中浪费了大量的热量。事实上,据计算,如果回收余热,可以覆盖整个欧盟的建筑存量热需求[1]。Celsius是欧盟共同资助的一个研究项目,其重点是在城市供暖和制冷系统中回收和整合来自当地的废弃能源。本文的目的是展示在科隆的两个摄氏度示范站点的性能。科隆的Celsius示范点为公立学校提供供暖和生活热水(DHW)。压缩热泵从污水管网中回收低品位的热量,并提供学校每年的基本热负荷。燃气锅炉提供热峰值负荷,并作为备用系统。根据各电厂监测参数,设计计算关键绩效指标。监测评估结果表明,与安装摄氏温度演示器之前的工厂配置相对应的基线情况相比,两个演示站点的燃料消耗和温室气体排放都有所下降。然而,减少能源消耗和排放的成本与工厂的性能密切相关。
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Heat recovery from sewage water using heat pumps in cologne: A case study
Heating and cooling are responsible for half of the EU's energy consumption. A lot of heat is being wasted in the industries. In fact, it is calculated that if waste heat was recovered, the entire EU's building stock heat demand could be covered [1]. Celsius is a co-funded EU research project which is focused on the recovery and the integration of waste energy from local sources in urban heating and cooling systems. The objective of this paper is to show the performance of two of the Celsius demonstrator sites in Cologne. The Celsius demonstrator sites in Cologne supply the heating and domestic hot water (DHW) of public schools. Compression heat pumps recover low grade heat from the sewage network and deliver the annual base heat load of the schools. Gas fired boilers supply the thermal peak loads and act as backup systems. Key performance indicators (KPI) were designed and calculated based on the monitored parameters of each plant. The results of the monitoring assessment show that fuel consumptions and GHG emissions of both demonstrator sites have decreased compared with the baseline situation corresponding to the plant configuration before installing the Celsius demonstrator. However, the costs of reducing both energy consumption and emissions are strongly linked to the performance of the plant.
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