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Seasonal Performance Simulation of an Air Sourced Gas Absorption Heat Pump

机译:空气源气体吸收热泵的季节性性能模拟

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Gas driven heat pumps are currently considered a next generation heating technology following up on state-of-the-art condensing boilers. Subject of this paper is the seasonal performance evaluation of a novel gas absorption heat pump (GAHP) operating with an ammonia-water mixture in a GAX (Generator Absorber Heat EXchange) thermodynamic cycle. The air-sourced GAHP currently under development within the European Project HEAT4U is designed for the application in the retrofit of existing residential buildings. Nominal capacity is 18 kW at an outdoor temperature of 7°C and a supply temperature of 50°C. For good performance under part load conditions modulation of the thermodynamic cycle is implemented. Based on a first experimental characterization of a prototype of the GAHP a performance map model is implemented in TRNSYS which includes both full load and part load behavior of the appliance. This appliance model is used in a system simulation of monovalent operation of the GAHP. To this purpose, building simulations were performed in order to generate typical building load profiles. By means of system simulations system performance is evaluated for different climatic conditions and supply temperatures of the heat distribution system. As an outcome of these simulations the strong dependency of the seasonal performance on the supply temperature of the heat distribution system is highlighted. In order to assess the gas utilization savings which can be expected by using the novel type of GAHP, a benchmark system was also implemented in the simulation. A system with a stand-alone gas condensing boiler is chosen for reference. Preliminary results of this ongoing simulation comparison clearly indicate that significant savings in gas utilization in the order of 25 % when compared to state-of-the-art condensing boilers may be expected for the average climate. Savings against standard non-condensing boilers may even be higher. Therefore, it is concluded that GAHP technology may be a very efficient future option to supply heat to retrofitted existing residential buildings.
机译:当前气体驱动的热泵目前被认为是最先进的冷凝锅炉后的下一代加热技术。本文的主题是用氨水混合物(发电机吸收剂热交换)热力学循环在氨水混合物中操作的新型气体吸收热泵(GAHP)的季节性绩效评估。目前在欧洲项目中正在开发的空气流量的GAHP专为在现有住宅建筑物改造中的应用而设计。标称容量为18 kW,室外温度为7°C,供应温度为50°C。为了在零件负载条件下实现良好的性能,实现了热力学循环的调制。基于GAHP的原型的第一个实验表征,在TRNSYS中实现了性能图模型,其包括设备的全负载和部分负载行为。该器具模型用于系统模拟GAHP的单价运行。为此目的,执行建筑模拟,以便产生典型的建筑物负载轮廓。通过系统模拟系统性能,用于不同的气候条件和热分配系统的供应温度。作为这些模拟的结果,突出了季节性性能对热分配系统供应温度的强大依赖。为了评估通过使用新型GAHP预期的气体利用率,还在模拟中实施基准系统。选择具有独立气体冷凝锅炉的系统以供参考。该持续仿真比较的初步结果清楚地表明,与最先进的冷凝锅炉相比,汽油利用量的大幅节省可能预期平均气候。对标准的非凝聚锅炉的节省甚至可能更高。因此,得出结论,GAHP技术可能是一种非常有效的未来选择,以供应热量以改装现有的住宅建筑。

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