首页|基于夹点的带喷射器CO2热泵系统性能分析

基于夹点的带喷射器CO2热泵系统性能分析

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为了研究带喷射器的跨临界CO2内部过冷热泵系统(TCISE),基于夹点建立了TCISE的热力学模型,分析了冷却水进出水温度及流量对系统性能的影响.研究表明:冷却水进水温度从25 ℃降低到15 ℃时,最优高压压力从9.3 MPa降至8.8 MPa,降低了 5.4%,最大COP从3.83提升至4.27,提高了 11.49%;TCISE存在临界冷却水出水温度和临界冷却水质量流量,当冷却水进水温度一定时,在出水温度低于临界出水温度或质量流量高于临界质量流量时,系统COP保持不变.
Performance analysis of CO2 heat pump systems with ejectors based on pinch point
In order to study the transcritical CO2 internal subcooling heat pump system with an ejector(TCISE),a thermodynamic model of TCISE is established based on the pinch point,and the effects of the inlet and outlet temperatures and flow rate of cooling water on system performance are analysed.The results show that when the inlet temperature of cooling water decreases from 25 ℃ to 15 ℃,the optimal high pressure drops from 9.3 MPa to 8.8 MPa,which decreases by 5.4%,and the maximum COP increases from 3.83 to 4.27,which increases by 11.49%.There are critical cooling water outlet temperature and critical cooling water mass flow rate in TCISE.When the inlet temperature of cooling water is constant and the outlet temperature is lower than the critical outlet temperature or the mass flow rate is higher than the critical mass flow rate,the COP of the system remains unchanged.

CO2 heat pumpejectorpinch pointinternal subcoolingcooling waterinlet temperatureoutlet temperatureflow rate

杨俊兰、张鑫、王林秀、韩一飞、杜雨帆

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天津城建大学,天津

CO2热泵 喷射器 夹点 内部过冷 冷却水 进水温度 出水温度 流量

2021年天津市研究生科研创新项目天津市自然科学基金项目

2021YJSS33717JCZDJC31400

2024

暖通空调
亚太建设科技信息研究院 中国建筑设计研究院 中国建筑学会暖通空调分会

暖通空调

CSTPCD
影响因子:0.711
ISSN:1002-8501
年,卷(期):2024.54(3)
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