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Experiment and Simulation of Two-stage Compression Air-source Heat Pump Water Heater

机译:两级压缩空气源热泵热水器的实验与仿真

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Air-source heat pump (ASHP) water heater is a device for hot water in which heat is absorbed from air by heat pump through consuming a little electric. While there are some disadvantages of ordinary single-stage heat pump used in low-temperature environment condition, such as high compression ratio, scarce heating ability and low efficiency. Two-stage compression refrigeration cycle was put forward to use in the air-source heat pump to improve the low temperature adaptability of ASHP in this paper. Combining the single-stage heat pump, a two-stage compression air-source heat pump water heater was designed, and the experimental instrument of prototype had been built up for experimental study. The results of actual tests showed that, compared with single-stage compression cycle, the compression ratio of two-stage cycle's was much less, and the heating ability was generally higher. The COP of the two-stage system could keep to about 1. 5 while the environment temperature dropped to -20°C. The lumped parameters steady model was built for the two-stage compression air-source heat pump water heater, and the simulated results were good agreement with the measured data.
机译:空气源热泵(ASHP)热水器是用于热水的装置,其中热泵通过消耗一点电动泵吸收热量。虽然在低温环境条件下使用的普通单级热泵存在一些缺点,但诸如高压缩比,稀缺加热能力和低效率。提出了两阶段压缩制冷循环,以在空气源热泵中使用,以改善本文的ASHP的低温适应性。组合单级热泵,设计了两级压缩空气源热泵热水器,并建立了实验研究的原型实验仪器。实际测试的结果表明,与单级压缩循环相比,两级循环的压缩比较少,加热能力通常更高。两级系统的COP可以保持约1. 5,而环境温度降至-20°C。集总参数稳定模型是为两级压缩空气源热泵热泵热水器而构建的,并且模拟结果与测量数据吻合良好。

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