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Optimal discharge pressure in transcritical CO2 heat pump water heater with internal heat exchanger based on pinch point analysis

机译:基于夹紧点分析的内部热交换器跨临界CO2热泵热水器的最佳排放压力

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摘要

In transcritical CO2 heat pump water heater, the pinch point in gas cooler and the utilization of internal heat exchanger (IHX) both have a significant impact on the optimal discharge pressure and system performance. A theoretical model was developed to investigate the effects, and the results demonstrated that when the water inlet temperature was low, the pinch point prevented the gas cooler outlet temperature from approaching the water inlet temperature at low discharge pressure, which impaired the coefficient of performance (COP). The application of IHX could reduce the gas cooler outlet temperature by 4.9 degrees C when the water inlet temperature was 10 degrees C and the discharge pressure was 8.5 MPa. In this condition, combining with the subcooling effect of IHX, the COP was accordingly improved by 26.3%. Regardless of the working condition, using IHX lowered the optimal discharge pressure and enhanced corresponding optimal COP. In addition, parametric analyses were conducted, and the results indicated that the augment of water outlet temperature and ambient temperature resulted in the rise of optimal discharge pressure. The increase of water inlet temperature mostly enlarged the optimal discharge pressure as well. Overall, the optimal discharge pressure varied within a range of 8.53 MPa to 13.38 MPa. The reduction of optimal discharge pressure caused by using IHX intensified with the increase of water inlet and outlet temperature. Nevertheless, the effect of ambient temperature was various depending on the working condition. The reduction of optimal discharge could be up to 1.18 MPa when the effectiveness of IHX was 0.6. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:在跨临界CO2热泵热水器中,气体冷却器中的夹点和内部热交换器的利用(IHX)都对最佳排出压力和系统性能产生显着影响。开发了理论模型来研究效果,结果表明,当进水温度低时,夹点防止了气体冷却器出口温度在低排出压力下接近进水口温度,这损害了性能系数(警察)。当进水温度为10℃时,IHX的应用可以减小气体冷却器出口温度4.9℃,排出压力为8.5MPa。在这种情况下,与IHX的过冷效果相结合,COP相应地提高了26.3%。无论工作条件如何,使用IHX降低了最佳排放压力并增强了相应的最佳警察。另外,进行参数分析,结果表明,增强水出口温度和环境温度导致最佳排出压力的升高。进水温度的增加也大多扩大了最佳排放压力。总的来说,最佳排出压力在8.53MPa至13.38MPa的范围内变化。通过使用IHX加强随水入口和出口温度的增强引起的最佳排出压力的降低。然而,根据工作条件,环境温度的影响是各种各样的。当IHX的有效性为0.6时,最佳放电的减少可以高达1.18MPa。 (c)2020 Elsevier Ltd和IIR。版权所有。

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