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Numerical simulation and performance assessment of a low capacity solar assisted absorption heat pump coupled with a sub-floor system

机译:低容量太阳能辅助吸收式热泵与底层系统的数值模拟和性能评估

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摘要

A prototype low capacity (10 kW) single stage Li-Br absorption heat pump (AHP), suitable for residential and small building applications has been developed as a collaborative result between various European research institutes and industries. The primary heat source for the AHP is supplied from flat plate solar collectors and the hot/chilled water from the unit is delivered to a floor heating/cooling system. In this paper we present the simulation results and an overview of the performance assessment of the complete system. The calculations were performed for two building types (high and low thermal mass), three climatic conditions, with different types of solar collectors and hot water storage tank sizes and different control systems for the operation of the installation. The simulations were performed using the thermal simulation code TRNSYS. The estimated energy savings against a conventional cooling system using a compression type heat pump was found to be in the range of 20-27%.
机译:欧洲各个研究机构和行业之间的合作成果是,开发了适用于住宅和小型建筑的低容量(10 kW)单级锂-溴吸收式热泵(AHP)原型。 AHP的主要热源由平板式太阳能集热器提供,而来自机组的热水/冷水则输送至地板加热/冷却系统。在本文中,我们介绍了仿真结果,并对整个系统的性能评估进行了概述。计算是针对两种建筑类型(高和低热质量),三种气候条件,具有不同类型的太阳能收集器和热水储罐尺寸以及用于设备运行的不同控制系统进行的。使用热仿真代码TRNSYS进行仿真。与使用压缩型热泵的常规冷却系统相比,估计的节能量在20%至27%的范围内。

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