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Experimental investigations on adiabatic capillary tube in a transcritical CO_2 heat pump system for simultaneous water cooling and heating

机译:跨临界CO_2热泵系统中同时冷却和加热的绝热毛细管的实验研究

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摘要

Experimental studies for a prototype CO_2 heat pump system employing capillary tube as an expansion device for simultaneous water heating and cooling have been presented. Tests were conducted with two stainless steel capillary tubes having specifications of ID = 1.71 mm, L = 2.95 m, ∈_c = 3.92 μm and ID = 1.42 mm, L = 1.0 m, ∈_c = 5.76 μm. System performance is significantly influenced by gas cooler water inlet temperature, whereas the effect of water flow rate on system performance is modest. An optimum charge is also recorded at which the system yields the best COP with a capillary tube. Performance deterioration is more severe at undercharged condition than at overcharged condition. Comparisons of test data with simulated results show that maximum deviation in mass flow rate of refrigerant is about ±10% and the flow characteristics exhibit a reasonably good match with the test data.
机译:已经提出了使用毛细管作为同时加热和冷却水的膨胀装置的原型CO_2热泵系统的实验研究。使用规格为ID = 1.71 mm,L = 2.95 m,ε_c= 3.92μm和ID = 1.42 mm,L = 1.0 m,ε_c= 5.76μm的两个不锈钢毛细管进行测试。系统性能受到气体冷却器进水温度的显着影响,而水流量对系统性能的影响是中等的。还记录了最佳电荷,系统在该电荷下使用毛细管可产生最佳COP。在充电不足的情况下,性能下降比在充电过度的情况下更为严重。测试数据与模拟结果的比较表明,制冷剂质量流量的最大偏差约为±10%,并且流量特性与测试数据具有相当好的匹配度。

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