Experimental study on high temperature heat pump system with a double heat source cascade

Author:

Bai Jing1,Jia Yifei1,Cui Siqi1,Zhang Chao1,Feng Shiwei1,Xu Chuang1,Fan Huifang1

Affiliation:

1. School of Energy and Environment, Zhongyuan University of Technology, Zhengzhou, China

Abstract

In order to improve the thermal performance of a high temperature heat pump system, to realize the efficient heat recovery of industrial waste heat, and to make the combined utilization of low and medium temperature heat sources, a high temperature heat pump system with a double heat source cascade is proposed, which can absorb heat from industrial waste heat and the system is capable of heating water up to the required high temperature. The performance of the system is tested and analyzed. It is found that the inlet temperature of the medium temperature heat source has a significant impact on the performance of the heat pump system under working mode of the medium and low temperature heat sources. When the inlet temperature of the intermediate temperature heat source rises from 42?C to 53?C, the heating capacity of the cascade heat pump increases by 18.6%, and its performance coefficient increases by 8.9%. This paper provides a reference for the high efficiency of the cascade high temperature heat pump technology.

Publisher

National Library of Serbia

Subject

Renewable Energy, Sustainability and the Environment

Reference17 articles.

1. Xu, X., Wang, Y. H., Refrigerant Injection for Heat Pumping/Air Conditioning Systems: Literature Review and Challenges Discussions, International Journal of Refrigeration, 34 (2010), 2, pp. 402-415

2. Jotanovia, M., et al., Using Heat From Low temperature Energy Sources by Means of a High temperature Heat Pump, International Journal of Latest Research in Science and Technology, 5 (2014), 3, pp. 18-25

3. Bamigbetan, O., et al., The Development of a Hydrocarbon High Temperature Heat Pump for Waste Heat Recovery, Energy, 15 (2019), 173, pp. 1141-1153

4. Cui, S. Q., et al., Effect Of Medium Pressure Air Supplement Technology on Performance of Heat Pump Air Conditioner for Electric Bus (in Chinese), Fluid Machinery, 8 (2018), 46, pp. 71-76

5. Zhou, G. H., et al., Study on Performance of Double Heat Source Cascade High Temperature Heat Pump System (in Chinese), Cryogenics & Superconductivity, 5(2014), 42, pp. 59-62

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