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Characteristics of R134a/R410A Cascade Heat Pump and Optimization

机译:R134a / R410A级联热泵的特性及优化

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Single stage air source heat pump has been widely used around the world. However, it has some drawback, for example, deteriorated heating capacity and COP in cold ambient temperature. To overcome these disadvantages, cascade cycle has been suggested and shows better performance at low ambient temperature. Cascade cycle has smaller compression ratio at each cycle and shows higher compression efficiency compared to that of single stage cycle. Intermediate pressure is most critical parameter which decides the system performance. There have been many research studies about cascade heat pump system using NH_3/CO_2 and C_3H_8/CO_2 as refrigerants at high and low stage, respectively. Most studies conducted on system optimization, finding the optimal intermediate pressure. However, little information has given about the experimental optimization results. In this study, AWHP (air to water heat pump), which is composed by two single stage cycle, was studied experimentally. AWHP high and low cycle adopts R134a and R410A as refrigerants, respectively, because critical temperature of R134a is higher than R410A. Since there are two single stage cycles, each cycle has a different compression ratio. In this research, by introducing numerical analysis, system optimization was studied. Characteristics of cascade cycle with respect to each compressor have been also studied. Experiment was conducted with various operating conditions; ambient temperature, water inlet temperature.
机译:单级空气源热泵已在世界范围内广泛使用。但是,它具有一些缺点,例如,在寒冷的环境温度下,加热能力和COP下降。为了克服这些缺点,已经提出了级联循环并在较低的环境温度下表现出更好的性能。与单级循环相比,级联循环在每个循环中具有较小的压缩比,并且显示出较高的压缩效率。中压是决定系统性能的最关键参数。对于分别以NH_3 / CO_2和C_3H_8 / CO_2作为制冷剂的高,低级联动热泵系统,已有很多研究。大多数研究都是针对系统优化进行的,以找到最佳的中间压力。但是,有关实验优化结果的信息很少。在这项研究中,实验研究了由两个单级循环组成的AWHP(空气对水热泵)。由于R134a的临界温度高于R410A,因此AWHP高循环和低循环分别采用R134a和R410A作为制冷剂。由于有两个单级循环,因此每个循环具有不同的压缩比。在这项研究中,通过引入数值分析,对系统优化进行了研究。还研究了关于每个压缩机的级联循环的特性。实验是在各种操作条件下进行的;环境温度,进水温度。

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