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Performance analysis of indirect-expansion solar assisted heat pump using CO_2 as refrigerant for space heating in cold climate

机译:Co_2作为冷气候空间加热的Co_2的间接扩展太阳能辅助热泵性能分析

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The indirect-expansion solar assisted heat pump (SAHP) is one of the main configurations for SAHP systems. Previous work on this configuration has focused only on one-stage heat pump cycles using traditional refrigerants, which will be phased out in the future. In addition, one-stage heat pumps may not work properly in cold climate regions. To evaluate the performance and understand the potential of indirect-expansion SAHPs using CO2 as a refrigerant for space heating in cold climates, models of an indirect-expansion SAHP with a one-stage transcritical CO2 cycle, with a two-stage transcritical CO2 cycle, and with the presently popular one-stage R410a cycle for space heating in Toronto, Canada were developed using the combined platforms of EES and TRNSYS. Based on these models, the performance variations of the three systems with solar thermal collector area, storage tank volume, and heat pump compressor capacity were simulated, compared, and presented. The comparison of the systems showed that the performance of the two-stage cycle peaked at a much smaller compressor capacity than that of the other cycles - 0.4 m(3)/h for the two-stage cycle, 0.7 m(3)/h for the one-stage cycle, and 1.7 m(3)/h for the R410a cycle. When the three systems operated at the optimal compressor capacity, the free energy ratio (FER) of the two-stage cycle could reach 0.772, which was higher than that of the one-stage cycle by 19.0% and higher than that of the R410a cycle by 11.6% at the given conditions. The potential cost reduction benefits from the smaller compressor and higher FER could make the two-stage cycle more competitive than the other cycles in cold climates.
机译:间接扩展太阳能辅助热泵(SAHP)是SAHP系统的主要配置之一。以前的这种配置的工作仅在使用传统制冷剂的一级热泵循环上专注,将来将在未来逐步淘汰。此外,一级热泵可能无法在寒冷的气候区域中正常工作。为了评估性能并了解使用CO2作为寒冷气候空间加热的制冷剂的性能和理解间接扩展萨拉普的潜力,具有单级跨临界CO2循环的间接膨胀SAHP的模型,具有两级跨临界CO2循环,在加拿大多伦多的目前受欢迎的一级R410A周期,使用EES和TRNSYS的组合平台开发。基于这些模型,模拟了与太阳能热集电极区域,储罐体积和热泵压缩机容量的三个系统的性能变化进行了模拟,比较,并呈现。系统的比较表明,两级循环的性能达到比另一个循环的压缩机容量更小的压缩机容量达到峰值 - 0.4米(3)/ h,对于两级循环,0.7米(3)/ h对于一个阶段循环,对于R410A循环,1.7米(3)/ h。当在最佳压缩机容量下操作的三个系统时,两级循环的自由能比(FER)可以达到0.772,其高于单阶段循环的0.772,比R410A循环高出19.0%,高于单级循环在给定条件下11.6%。较小的压缩机和更高的FER的潜在成本降低益处可以使两级循环比冷气候中的其他周期更具竞争力。

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