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Application of the Peltier sub-cooled trans-critical carbon dioxide heat pump system for water heating - Modelling and performance analysis

机译:珀耳帖过冷超临界二氧化碳热泵系统在水加热中的应用-建模和性能分析

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Although the Peltier sub-cooled trans-critical CO2 cycle concept has been applied for refrigeration, which typically involves discharging the heat into ambient air, this system is rarely considered for heat pumping purposes. Therefore, this research aims to expand the scope of the Peltier sub-cooled trans-critical CO2 cycle into heat pump water heating where the generated heat is uniquely discharged into water at temperatures progressively higher than ambient. The heat flows between the CO2 and flowing water are modelled as Nusselt based convective heat transfers where a 1D model is imposed to the direct gas cooler to improve simulation accuracy. Moreover, important but often neglected characteristics such as Peltier device size and Peltier heating factor (PHF) will also be analyzed. Results indicate that the PHF has an extremely strong influence on the overall system's coefficient of performance (COP). Specifically, an optimal PHF value exists as a trade-off between the benefit of sub-cooling and the losses due to reduced CO2 mass flow rate, the latter of which caused reductions in the convective heat transfer coefficient and the direct gas cooler's heating capacity. In the meantime, although larger Peltier device sizes improves the system COP, the improvement will converge towards a specific maximum.
机译:尽管Peltier过冷超临界CO2循环概念已应用于制冷,通常涉及将热量排放到周围空气中,但很少考虑将该系统用于热泵目的。因此,本研究旨在将珀尔帖过冷跨临界CO2循环的范围扩展到热泵水加热中,在此过程中,所产生的热量在逐渐高于环境温度的情况下唯一地排放到水中。将二氧化碳和流动水之间的热流建模为基于Nusselt的对流传热,其中将一维模型应用于直接气体冷却器以提高模拟精度。此外,还将分析重要但经常被忽略的特性,例如珀耳帖器件尺寸和珀耳帖加热因子(PHF)。结果表明,PHF对整个系统的性能系数(COP)具有极强的影响。具体而言,存在最佳的PHF值,这是过冷的好处与由于CO2质量流量降低而造成的损失之间的权衡,后者会导致对流传热系数和直接气体冷却器的加热能力降低。同时,尽管较大的Peltier器件尺寸可以改善系统COP,但这种改进将趋于特定最大值。

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