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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermodynamic performance evaluation of a heat pump system with textile based solar air heater for heating process
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Thermodynamic performance evaluation of a heat pump system with textile based solar air heater for heating process

机译:用于加热过程的纺织太阳能空气加热器热泵系统热力学性能评价

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摘要

In this study, a newly system is designed and tested which integrates air-to-water heat pump and solar air collector having fabric absorber for the shortcoming of frost depositing on the evaporator in heating condition. Thus, it can achieve synchronous and heat exchange in one integrated system between R410A, gaseous and liquid heat source. In addition, the system performance is evaluated in comparison with those of the standard heat pump and the flat-plate solar air collector assisted heat pump under the same climatic conditions. In this respect, experimental tests are performed for winter season and the thermodynamic inefficiencies' changes are monitored by real-time exergy analysis under climate conditions of the Mu.gla province/Turkey. This approximation allows the designer and the manufacturer to see the progress. The results of the study indicate that the textile based solar air collector assisted heat pump shows superior performance with 5.11 COP and 56% exergy efficiency when compared to the other two heat pumps. The equipment with the highest exergy destruction is determined as evaporator. In low temperatures, the problem of frost depositing on the evaporator is solved faster with the use of solar air collector. With the use of a textile-based solar air collector on heat pump, the electrical consumption of the compressor is reduced by 8.3%. Consequently, the proposed system clearly demonstrated its applicability as an independent and reliable system for the building heating process due to its benefits like energy saving, protection against environmental conditions and evaporator' anti-frost deposit behavior.
机译:本研究针对加热条件下蒸发器结霜的问题,设计并测试了一种新型系统,该系统将空气-水热泵和带织物吸收器的太阳能空气收集器结合起来。因此,它可以在一个集成系统中实现R410A、气体和液体热源之间的同步和热交换。此外,在相同气候条件下,将系统性能与标准热泵和平板太阳能空气集热器辅助热泵进行了比较。在这方面,在冬季进行了实验测试,并通过实时火用分析监测了Mu气候条件下热力学无效率的变化。格拉省/土耳其。这种近似可以让设计师和制造商看到进展。研究结果表明,与其他两种热泵相比,基于织物的太阳能空气集热器辅助热泵的性能优越,COP为5.11,火用效率为56%。(火用)破坏最大的设备被确定为蒸发器。在低温下,使用太阳能空气收集器可以更快地解决蒸发器上结霜的问题。通过在热泵上使用基于织物的太阳能空气收集器,压缩机的电耗降低了8.3%。因此,由于其节能、环保和蒸发器防结霜性能等优点,所提出的系统清楚地证明了其作为独立可靠的建筑供暖系统的适用性。

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