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Energy and exergy analysis of an R410A small vapor compression system retrofitted with R290

机译:R410A小型蒸汽压缩系统的能量和漏洞分析R290改装

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摘要

This study analyzes the energy and exergy of a small vapor compression system by retrofitting R410A working fluid with R290. The study was conducted on a split air conditioner by maintaining the air temperature through the condenser at 308?K and the air temperature through the evaporator at 300?K. The full charge amount of R410A was 340?g and the produced refrigerating capacity, power compressor, and coefficient of performance (COP) were 1899?W, 333?W, and 4.6, respectively. Subsequently, by varying the retrofit charging amount of R290, the optimum charging amount was obtained in the range of 45–55% from the full charge amount of R410A according to the COP and exergy efficiency; it exhibited the highest COP of 4.9. However, the refrigerating capacity and power consumption of the compressor decreased by 31.3 and 35.7%, respectively, compared with the system's condition of full charge amount R410A. Finally, the total exergy destruction and highest exergy efficiency were sequentially determined, where R410A exhibited 549.2?W and 0.26, and R290 exhibited 338?W and 0.21, respectively.
机译:该研究通过改装R290改装R410A工作流体来分析小蒸汽压缩系统的能量和漏洞。通过将空气温度通过308·k和空气温度通过蒸发器以300μk保持通过冷凝器,通过将空气温度保持在分割空调上进行研究。 R410A的完全电荷量为340〜G,生产的制造能力,功率压缩机和性能系数(COP)分别为1899?W,333?W和4.6。随后,通过改变R290的改造充电量,根据COP和Outergy效率,从R410a的全充电量获得的最佳充电量在45-55%的范围内;它表现出了4.9的最高警察。然而,与系统的全电荷量R410A的状态相比,压缩机的制冷容量和功耗分别降低了31.3和35.7%。最后,依次确定总漏洞破坏和最高漏洞效率,其中R410A显示出549.2〜W和0.26,R290分别显示出338°W和0.21。

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